WO2023024559A1 - 熄屏显示的控制方法及电子设备 - Google Patents
熄屏显示的控制方法及电子设备 Download PDFInfo
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- WO2023024559A1 WO2023024559A1 PCT/CN2022/089928 CN2022089928W WO2023024559A1 WO 2023024559 A1 WO2023024559 A1 WO 2023024559A1 CN 2022089928 W CN2022089928 W CN 2022089928W WO 2023024559 A1 WO2023024559 A1 WO 2023024559A1
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- H04W52/0267—Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level by controlling user interface components
- H04W52/027—Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level by controlling user interface components by controlling a display operation or backlight unit
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- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
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- Y02D30/00—Reducing energy consumption in communication networks
- Y02D30/70—Reducing energy consumption in communication networks in wireless communication networks
Definitions
- the present application relates to the field of communication technologies, and in particular to a method for controlling screen-off display and electronic equipment.
- the realization principle of the AOD function is: when the screen of the electronic device is off, some pixels of the screen can be turned on to display information such as clock, date, notification, etc., while other pixels of the screen are always off, for example These off-state pixels appear black, so that the user can conveniently view the above information without turning on the entire screen of the electronic device, and the power consumption of the electronic device can be reduced.
- the screen-off display function is enabled on the electronic device, the screen-off display pattern of the electronic device in the screen-off state is monotonous, which needs to be improved.
- the present application provides a screen-off display control method and an electronic device, which solves the problem in the prior art that the screen-off display pattern of the electronic device in the screen-off state is monotonous.
- the present application provides a method for controlling a screen-off display, the method comprising:
- the electronic device When the electronic device is in a screen-off state, the electronic device displays a screen-off image, the screen-off image includes a plurality of layers, and each layer in the plurality of layers contains different display elements;
- the electronic device When the electronic device satisfies the preset condition, the electronic device updates and displays the display elements on the first layer in the off-screen image, and the display elements on the first layer include a foreground window; wherein, the preset The set conditions include: the electronic device detects that the user location information changes, or the electronic device receives the user's first operation on the screen-off image;
- the electronic device when the electronic device detects that the user behavior information changes, the electronic device updates and displays the display elements on the second layer in the off-screen image, and the display elements on the second layer include scene patterns;
- the electronic device when the electronic device detects a change in time and weather information, the electronic device updates and displays the display elements on the third layer in the off-screen image, and the display elements on the third layer include a background pattern.
- each layer corresponds to a type of information
- each layer can change according to different information trigger factors
- these multiple layers can be dynamically superimposed and combined according to different scenarios , so multiple layers can be combined into a dynamically changing AOD off-screen image.
- the electronic device can display the off-screen image on the screen, including time, date, notification message, incoming call reminder message, power indicator, user behavior and weather and other information, and as the scene changes,
- the off-screen image will be dynamically updated.
- the pattern displayed on the off-screen can dynamically change with different scenes, which improves the off-screen display effect .
- the user location information includes: being at home, at a company, or traveling outside.
- the user behavior information includes: an entertainment state, a learning state, and/or an exercise state.
- the temporal weather information includes: early/mid/late time, season, and/or weather.
- the method further includes:
- the electronic device obtains M type information
- the electronic device determines a display element corresponding to each type of information according to each type of information in the M types of information;
- the electronic device generates M layers with different display elements according to the corresponding display elements of the M types of information
- the electronic device superimposes the M layers with different display elements to obtain an off-screen image.
- the electronic device displays the screen-off image.
- the electronic device acquires the M-type information in real time or periodically.
- the M types of information include user location information, user behavior information, and time and weather information;
- the display element corresponding to the user positioning information is a foreground window; wherein, if the user positioning information is different, the corresponding foreground windows are different;
- the display elements corresponding to the user behavior information are scene patterns; where the user behavior information is different, the corresponding scene patterns are different;
- the display element corresponding to the time weather information is a background pattern; where the time weather information is different, the corresponding background pattern is different.
- the electronic device generates M layers with different display elements according to the display elements corresponding to the M types of information, including:
- the electronic device uses the layer of the foreground window corresponding to the user positioning information as the first layer;
- the electronic device uses a layer having a scene pattern corresponding to the user behavior information as a second layer;
- the electronic device uses a layer with a background pattern corresponding to the weather information at the time as a third layer;
- the M layers include the first layer, the second layer and the third layer.
- the method further includes:
- the electronic device When the electronic device is in a screen-off state, the electronic device also displays at least one of time, date, notification message, incoming call reminder message, and battery indicator.
- the electronic device displays an off-screen image, including:
- the electronic device superimposes and displays multiple layers in the off-screen image according to a preset layer superposition sequence.
- the preset layer stacking sequence may be that the first layer is located at the top layer, the second layer is located between the first layer and the third layer, and the third layer is located at the bottom layer.
- the method further includes:
- the electronic device In response to a second operation by the user, the electronic device updates the layer superposition order
- the electronic device periodically updates the layer stacking sequence.
- the electronic device when the electronic device satisfies the first preset condition, the electronic device updates and displays the display elements in the first layer in the off-screen image, and the first layer
- the display elements include the foreground window, including:
- the electronic device In response to a user's first operation on the screen-off image, the electronic device switches the foreground window located on the first layer in the screen-off image from a closed state to an open state;
- the electronic device in response to a user's first operation on the screen-off image, switches the foreground window located on the first layer in the screen-off image from an open state to a closed state;
- the electronic device displays a shutter effect in the foreground window located on the first layer in the screen-off image.
- the electronic device when the screen of the electronic device is off and the screen off image is displayed, in response to the user's fifth operation of sliding on the screen off image along a preset direction, the electronic device displays blinds in part or all of the foreground window Effect.
- the method further includes:
- the electronic device updates and displays the scene pattern on the second layer.
- the method before the electronic device updates and displays the display elements located on the first layer in the off-screen image, the method further includes:
- the electronic device determines a foreground window corresponding to the user positioning information according to the user positioning information and a first preset relationship
- the first preset relationship is a preset corresponding relationship between the user positioning information and a foreground window with a specific shape or size.
- the method before the electronic device updates and displays the display elements located on the second layer in the off-screen image, the method further includes:
- the electronic device determines a scene pattern corresponding to the user behavior information according to the user behavior information and a second preset relationship
- the second preset relationship is a preset corresponding relationship between the user behavior information and scene patterns with specific content.
- the method further includes:
- the electronic device determines, according to the application program that the electronic device is running, behavior information that the user acts on the electronic device as the user behavior information.
- the electronic device determines behavior information of the user acting on the electronic device according to an application program running on the electronic device, including:
- the electronic device acquires user motion data according to the application program that the electronic device is running;
- the electronic device determines that the user's exercise data meets a preset exercise condition, the electronic device determines that the user behavior information includes an exercise state;
- the user motion data includes the user's heart rate value and/or the number of steps within a preset time period.
- the method before the electronic device updates and displays the display elements located on the third layer in the off-screen image, the method further includes:
- the electronic device determines a background pattern corresponding to the time weather information according to the time weather information and a third preset relationship
- the third preset relationship is a preset corresponding relationship between the temporal weather information and a background pattern with a specific pattern, color and/or brightness.
- the electronic device displays an off-screen image, including:
- the electronic device displays the screen-off image in a first screen-off display manner
- the first off-screen display mode includes any one of the following: light touch display mode, timing display mode or all-day display mode.
- the method further includes:
- the electronic device sets the screen-off display mode as the first screen-off display mode.
- the method before the electronic device displays the screen-off image when the electronic device is in the screen-off state, the method further includes:
- the electronic device In response to the user's fourth operation, the electronic device turns on a screen-off display function.
- the method further includes:
- the electronic device displays a setting interface of the off-screen display function, and the setting interface includes a preset gallery;
- the electronic device uses the selected image as a display element located in the target layer in the off-screen image;
- the above-mentioned target layer may be one of multiple layers in the off-screen image.
- the preset gallery may include images stored locally on the electronic device and/or images stored in a network server.
- the present application provides a screen-off display control device, which includes a unit for performing the method in the first aspect above.
- the device may correspond to executing the method described in the first aspect above.
- the relevant description of the units in the device please refer to the description in the first aspect above, and details are not repeated here for brevity.
- Hardware or software includes one or more modules or units corresponding to the functions described above. For example, a processing module or unit, a display module or unit, etc.
- the present application provides an electronic device, the electronic device includes a processor, the processor is coupled with a memory, the memory is used to store computer programs or instructions, and the processor is used to execute the computer programs or instructions stored in the memory, so that the first The methods in the aspect are executed.
- the processor is used to execute the computer programs or instructions stored in the memory, so that the apparatus performs the method in the first aspect.
- the present application provides a computer-readable storage medium on which is stored a computer program (also referred to as an instruction or code) for implementing the method in the first aspect.
- a computer program also referred to as an instruction or code
- the computer when the computer program is executed by a computer, the computer can execute the method in the first aspect.
- the present application provides a chip, including a processor.
- the processor is used to read and execute the computer program stored in the memory, so as to execute the method in the first aspect and any possible implementation manners thereof.
- the chip further includes a memory, and the memory is connected to the processor through a circuit or wires.
- the present application provides a chip system, including a processor.
- the processor is used to read and execute the computer program stored in the memory, so as to execute the method in the first aspect and any possible implementation manner thereof.
- the chip system further includes a memory, and the memory is connected to the processor through a circuit or wires.
- the present application provides a computer program product
- the computer program product includes a computer program (also referred to as an instruction or code), and when the computer program is executed by a computer, the computer implements the method in the first aspect .
- Fig. 1 is a schematic diagram of an off-screen display effect provided by an embodiment of the present application
- FIG. 2 is a schematic flow chart of a control method for screen-off display provided by an embodiment of the present application
- FIG. 3 is a schematic diagram of different layer combinations in a control method for screen-off display provided by an embodiment of the present application
- FIG. 4 is a schematic diagram of different layers superimposed in different orders in a control method for screen-off display provided by an embodiment of the present application;
- Fig. 5 is a schematic diagram of superimposition and combination of different layers in a preset order in a control method for screen-off display provided by an embodiment of the present application;
- FIG. 6 is one of the schematic diagrams of an interface of an electronic device in which a control method for screen-off display provided by an embodiment of the present application is applied;
- Fig. 7 is the second schematic diagram of the interface of an electronic device in which a method for controlling the screen-off display provided by the embodiment of the present application is applied;
- Fig. 8 is the third schematic diagram of the interface of an electronic device in which a method for controlling the screen-off display provided by the embodiment of the present application is applied;
- FIG. 9 is the fourth schematic diagram of an interface of an electronic device in which a control method for screen-off display provided by an embodiment of the present application is applied;
- FIG. 10 is a schematic structural diagram of a control device for screen-off display provided by an embodiment of the present application.
- FIG. 11 is a schematic structural diagram of an electronic device provided by an embodiment of the present application.
- first and second and the like in the specification and claims herein are used to distinguish different objects, not to describe a specific order of objects.
- first operation, second operation, etc. are used to distinguish different operations, not to describe a specific order of operations.
- words such as “exemplary” or “for example” are used as examples, illustrations or illustrations. Any embodiment or design scheme described as “exemplary” or “for example” in the embodiments of the present application shall not be interpreted as being more preferred or more advantageous than other embodiments or design schemes. Rather, the use of words such as “exemplary” or “such as” is intended to present related concepts in a concrete manner.
- multiple means two or more, for example, multiple processing units refer to two or more processing units, etc.; multiple A component refers to two or more components or the like.
- FIG. 1 shows a schematic diagram of an off-screen display effect after the current electronic device turns on the off-screen display function.
- the electronic device 1 such as a mobile phone
- FIG. 1 shows a schematic diagram of an off-screen display effect after the current electronic device turns on the off-screen display function.
- the electronic device 1 such as a mobile phone
- some pixels of the screen are lit to display clock, date, notification and other information , which is convenient for the user to view the above information, and can reduce the power consumption of the electronic device.
- the screen-off display pattern in the industry is usually a fixed picture or a segment of animation.
- the screen-off display pattern of the electronic device in the screen-off state is monotonous and needs to be improved.
- the embodiment of the present application provides a control method and an electronic device for screen-off display, in which multiple layers can be preset, where each layer corresponds to a type of information, and each layer can be triggered according to a different information trigger factor changes, these multiple layers can be dynamically superimposed and combined according to different scenes, so multiple layers can be combined into a dynamically changing AOD off-screen image.
- the electronic device When the electronic device is in the off-screen state, the electronic device can display the off-screen image on the screen, including time, date, notification message, incoming call reminder message, power indicator, user behavior and weather and other information, and as the scene changes, The off-screen image will be dynamically updated.
- the pattern displayed on the off-screen can dynamically change with different scenes, which improves the off-screen display effect .
- the electronic device described in this application is an electronic device with a display screen, which may be a smart terminal such as a mobile phone, a tablet computer, or a smart watch, and the electronic device is not specifically limited here.
- the following embodiments all take the electronic device as a mobile phone as an example.
- the electronic device in the embodiment of the present application may be a mobile terminal or a non-mobile terminal.
- the mobile terminal can be a mobile phone, a tablet computer, a notebook computer, a handheld computer, a vehicle terminal, a wearable device, an ultra-mobile personal computer (ultra-mobile personal computer, UMPC), a netbook or a personal digital assistant (personal digital assistant, PDA), etc.
- the non-mobile terminal may be a personal computer (personal computer, PC), a television (television, TV), a teller machine or a self-service machine, etc., which are not specifically limited in the embodiment of the present application.
- the execution subject of the method for controlling the screen-off display provided in the embodiment of the present application may be the above-mentioned electronic device, or it may be a functional module and/or a functional entity in the electronic device that can realize the control method for the screen-off display, and the present application
- the solution can be realized by means of hardware and/or software, which can be specifically determined according to actual usage requirements, and is not limited in this embodiment of the present application.
- the method for controlling the screen-off display provided by the embodiment of the present application will be exemplarily described below by taking an electronic device as an example with reference to the accompanying drawings.
- FIG. 2 is a schematic flowchart of a method for controlling a screen-off display provided by an embodiment of the present application. Referring to Fig. 2, the method includes the following steps S101-S106.
- the electronic device In response to a user's operation on the electronic device, the electronic device enables a screen-off display function.
- the electronic device acquires M category information.
- the electronic device may acquire M-type information in real time or periodically.
- M may be an integer greater than 1.
- the M types of information may include the following three types of information: user location information, user behavior information, and time and weather information.
- the above user location information may include: at home, at a company, or out on a trip.
- the electronic device can obtain the location information of the electronic device through a navigation application, and then determine the user location information.
- the above-mentioned time and weather information may include: morning/midday/late time, season, and/or weather.
- the electronic device may obtain the season and weather conditions of the region where the electronic device is located through a weather application.
- the electronic device can obtain the morning/midtime/late time of the region where the electronic device is located through a clock application.
- the above user behavior information may include: entertainment status, learning status, and/or exercise status.
- the electronic device can determine the behavior information of the user acting on the electronic device according to the application program that the electronic device is running, so as to obtain the user behavior information.
- the electronic device when the electronic device detects that a video application, a music application or a game application is running, the electronic device may determine that the user behavior information includes the entertainment status.
- the electronic device when the electronic device detects that a teaching application is running, the electronic device may determine that the user behavior information includes the learning status.
- the electronic device may acquire the user's exercise data according to the exercise application running on the electronic device.
- the user's exercise data may include the user's heart rate value, and/or the number of steps within a preset time period.
- the electronic device determines that the user's exercise data meets the preset exercise conditions, for example, when the heart rate value detected by the electronic device is greater than or equal to the preset heart rate threshold, the electronic device determines that the user is in an exercise state, that is, the user behavior information includes exercise state.
- M-type information is listed as an example, and in actual implementation, the M-type information may also include any other information that meets actual usage requirements. It can be understood that the above user location information, user behavior information, and time and weather information are also listed as examples, and other information may also be included in actual implementation. Specifically, it may be determined according to actual usage requirements, and is not limited in this embodiment of the present application.
- the electronic device determines, according to each type of information in the M types of information, a display element corresponding to each type of information.
- M-type information including user location information, user behavior information, and time and weather information as an example for illustration.
- the display element corresponding to the user positioning information may be a foreground window.
- a corresponding relationship between user positioning information and a foreground window with a specific shape or size may be preset, and the corresponding relationship is referred to as a first preset relationship hereinafter.
- different user positioning information corresponds to different foreground windows.
- the electronic device may determine the foreground window corresponding to the user positioning information according to the first preset relationship.
- attributes such as the shape and/or size of the foreground window may change with changes in user location information when the screen is off.
- the display element corresponding to the user behavior information may be a scene pattern.
- the corresponding relationship between the user behavior information and the scene pattern with specific content may be preset, and the corresponding relationship is referred to as the second preset relationship hereinafter.
- different user behavior information corresponds to different scene patterns.
- scene patterns can be preset, such as music note animation, motion pattern, heartbeat diagram and the like.
- the electronic device may determine the scene pattern corresponding to the user behavior information according to the second preset relationship.
- the content of the scene pattern may change as the behavior information of the user acting on the electronic device changes when the screen is turned off.
- the display element corresponding to the time and weather information may be a background pattern.
- the corresponding relationship between the weather information at the set time and the background pattern with a specific pattern, color and/or brightness can be preset, and the corresponding relationship is referred to as the second preset relationship hereinafter.
- the corresponding background patterns are different if the time weather information is different.
- the background patterns there can be preset static image background with bright sky and sun, static image background with dark sky, and static image background under sky. Rain and night effect animation background, etc.
- the electronic device may determine the background pattern corresponding to the time weather information according to a third preset relationship.
- the image characteristics, color and/or brightness of the background pattern may change as the weather information changes over time when the screen is turned off.
- the electronic device generates M layers with different display elements according to the display elements corresponding to the M types of information.
- M layers including layer 1, layer 2 and layer 3 are examples for illustration.
- the electronic device may use the layer having the foreground window as layer 1 .
- a circular window as shown in (a2) in FIG. 3 may appear in layer 1 .
- an oval window as shown in (a3) in FIG. 3 may appear in layer 1 .
- layer 1 may present an airplane window as shown in (a1) in FIG. 3 .
- the electronic device may use the layer having the scene pattern as layer 2 .
- layer 2 may present corresponding entertainment scene patterns, such as video animations, game graphics, or music note animations as shown in (b1) in FIG. 3 .
- layer 2 may present a corresponding learning scene pattern, such as a book cover or the like.
- layer 2 may present a corresponding motion scene pattern, such as the motion pattern shown in (b2) in FIG. 3 .
- the electronic device may use the layer with the background pattern as layer 3 .
- layer 3 may present a static picture with bright sky and sun as shown in (c1) in FIG. 3 .
- layer 3 may present a static image with dark gray sky and dark clouds as shown in (c2) in FIG. 3 .
- layer 3 may present a moving picture with a rainy sky and a dark night effect as shown in (c3) in FIG. 3 .
- the M layers may include more than three layers, which may be determined according to actual usage requirements.
- the embodiment of the present application Not limited.
- the electronic device superimposes M layers with different display elements to obtain an off-screen image.
- Figure 3 shows various foreground windows in layer 1, various scene patterns in layer 2, and various background patterns in layer 3. These three layers can be customized according to different scenes. Dynamically superimposed and combined, so a dynamically changing off-screen image, such as off-screen image 11 , off-screen image 12 , or off-screen image 13 , can be obtained.
- the electronic device may superimpose M layers with different display elements according to a preset layer superposition order to obtain an off-screen image.
- the above preset stacking sequence of layers may be that layer 1 is located at the top layer, layer 2 is located between layer 1 and layer 3, and layer 3 is located at the bottom layer.
- the electronic device may update the stacking sequence of the layers in response to a user's trigger operation.
- the electronic device may also periodically update the stacking order of the layers.
- multiple layers in addition to the fixed stacking order, multiple layers can also dynamically adjust the stacking order of the layers according to the scene, which improves the diversity of the off-screen display.
- FIG. 4 schematically shows various possible manners in which layer 1, layer 2 and layer 3 are superimposed according to different layer superposition sequences.
- the layer stacking order is layer 1, layer 2, and layer 3.
- the layers are superimposed in the order of layer 1, layer 3, and layer 2.
- the layers are superimposed in the order of layer 2, layer 1, and layer 3.
- the layers are superimposed in the order of layer 2, layer 3, and layer 1.
- the stacking order of the layers is layer 3, layer 1, and layer 2.
- the layer stacking sequence is layer 3, layer 2, and layer 1.
- the off-screen image may be a static image or a dynamic image, which may be specifically determined according to display elements in each layer. It can be understood that when the display element in any layer is a dynamic pattern, the off-screen image is presented as a dynamic image.
- the screen-off image can be continuously displayed, at this time, some pixels of the screen are turned on, and other pixels are turned off.
- the electronic device may no longer display the screen-off image, and all pixels of the full screen are turned off.
- multiple layers can be preset, where each layer corresponds to a type of information, and each layer can change according to different information trigger factors. Layers can be dynamically superimposed and combined according to different scenes, so multiple layers can be combined into a dynamically changing AOD off-screen image.
- the electronic device When the electronic device is in the off-screen state, the electronic device can display the off-screen image on the screen, including time, date, notification message, incoming call reminder message, power indicator, user behavior and weather and other information, and as the scene changes, The off-screen image will be dynamically updated.
- the pattern displayed on the off-screen can dynamically change with different scenes, which improves the off-screen display effect .
- the electronic device when the electronic device is in a screen-off state, the electronic device may also display at least one of time, date, notification message, incoming call reminder message, and power indicator.
- the information can be carried in another layer, called the information layer; optionally, the information layer can be superimposed together with the above-mentioned layer 1, layer 2 and layer 3 to obtain an off-screen image.
- Fig. 5 exemplarily shows a schematic diagram of layer 1, layer 2, layer 3 and information layers being synthesized in a certain order.
- the multiple layers are the information layer, layer 1, layer 2, and layer 3 in sequence.
- the information layer can be used to display time, date, notification message, incoming call reminder message or battery indicator, etc.
- Layer 1 is used to display the window, and the shape of the window can change over time.
- Layer 2 is used to display scene patterns, which can change with heart rate or steps.
- Layer 3 is used to show the sky, where patterns and brightness change with time and weather.
- the embodiment of the present application does not limit the stacking order of the information layer, layer 1, layer 2, and layer 3, which may be determined according to actual usage requirements.
- the layer overlay principle includes: the displayed content of the information layer is not blocked by other layers.
- the electronic device can display the off-screen image on the screen, including time, date, notification message, incoming call reminder message, power indicator, user behavior and weather and other information, and as the scene changes,
- the off-screen image will be dynamically updated, which can improve the display effect.
- the electronic device when the screen of the electronic device is turned off to display the screen-off image, as shown in (a) and (b) in FIG. 6 , in response to the user's operation on the screen-off image (for example Sliding from top to bottom), the electronic device can trigger the switching of the open foreground window to the closed state.
- the area where the foreground window is located may be displayed as opaque.
- the area can be in a specific color, such as blue or black.
- the electronic device in response to the user's operation (such as sliding from bottom to top) on the screen-off image, can trigger switching the foreground window in the closed state to the open state, wherein , as shown in (d) of FIG. 6 , when the foreground window is in an open state, the area where the foreground window is located can be displayed as translucent or completely transparent.
- the electronic device when the screen of the electronic device is turned off and the screen-off image is displayed, in response to the user's operation of sliding on the screen-off image along a preset direction (for example, long press on the screen-off image and select from slide up and down), the electronic device can display the shutter effect in part or all of the foreground window.
- a preset direction for example, long press on the screen-off image and select from slide up and down
- the electronic device may update the scene pattern in the foreground window, or update the background pattern, or update the scene pattern and the background pattern at the same time.
- the electronic device may set different screen-off patterns or styles in response to user operations.
- the setting interface of the electronic device includes a desktop and wallpaper option 15, and when the user selects the desktop and wallpaper option 15, as shown in (b) in Figure 7, the electronic device In response to this operation, the device may jump to the desktop and wallpaper interface 16, where an off-screen display setting option 17 is displayed. As shown in (b) and (c) in FIG. 7, in response to the user's operation on the off-screen display setting option 17, the electronic device jumps to the off-screen display setting interface 18.
- the off-screen display setting interface 18 displays an off-screen style option 19 . Further, as shown in (c) and (d) of FIG.
- the electronic device in response to the user's operation on the screen-off style option 19 , the electronic device jumps to the screen-off style interface 20 .
- Various screen-off styles or styles are displayed in the screen-off style interface 20 , such as a screen-off style option 21 .
- the electronic device in response to the user's operation on the screen-off style option 21 and the operation on the application control 22, the electronic device sets the screen-off style corresponding to the screen-off style option 21 as the display style when the screen is off .
- the electronic device may set a picture when the screen is off in response to a user operation.
- a selection picture control 23 is included in the screen-off style interface of the electronic device, and in response to the user's operation on the selection picture control 23, as shown in (b) in FIG. 8 , The electronic device jumps to the picture selection interface 24 .
- the electronic device in response to the user's selection operation on at least one picture in the picture selection interface 24, as shown in (d) in Figure 8, the electronic device can set the selected picture as a scene pattern and/or or background pattern.
- the above interface for selecting pictures may include static images or moving images locally stored in the electronic device, and/or static images or moving images stored in the network server, which is not limited in this embodiment of the present application.
- the electronic device in response to a user operation, may be set to enable the screen-off display function.
- the screen-off display setting interface of the electronic device includes a screen-off display control 25 , and the user can trigger the electronic device to turn on or off the screen-off display function by operating the screen-off display control 25 .
- the screen-off display function is turned on, when the screen is off, information such as time, date, text message and call reminder can be displayed, and the screen-off image can be dynamically updated and displayed.
- the information such as time or date can be presented on the display screen of the electronic device through various presentation methods.
- the presentation form of the clock can be in the form of a clock dial or Arabic numerals, etc.
- the presentation form of the notification can be an application. Small icons or text, etc., are not limited here.
- the electronic device in response to a user operation, may set a screen-off display mode. Further, when the electronic device is in a screen-off state, the electronic device may display the screen-off image according to the screen-off display manner.
- the screen-off display manner may include any of the following: a light touch display manner, a timer display manner, or an all-day display manner.
- the screen-off display setting interface of the electronic device also includes a display mode control 26.
- the electronic device A display mode selection box 27 may pop up, and the display mode selection box 27 includes light touch display mode, timing display mode and all-day display mode. The user can select any one of the display modes, which can trigger the electronic device to set the display mode when the screen is off.
- the electronic device in response to the user's operation of selecting the light touch display mode, may set the off-screen display mode as the light touch display mode.
- the electronic device may display an off-screen image in a light touch display manner. That is, when the electronic device is in the screen-off state, the user can trigger the electronic device to display the screen-off image by lightly touching the screen.
- the electronic device may set the screen-off display mode as the timing display mode, for example, the time range corresponding to the timing display mode may be set from 8 am to 10 pm.
- the electronic device may display an off-screen image in a timing display manner. That is, when the electronic device is in the screen-off state and the current moment is within the predetermined time range, the electronic device can be automatically triggered to display the screen-off image.
- the electronic device in response to the user's operation of selecting the all-day display mode, may set the screen-off display mode as the all-day display mode.
- the electronic device may display an off-screen image in an all-day display manner. That is, as long as the electronic device is in a screen-off state, the electronic device will continue to display the screen-off image.
- multiple layers may be preset, each layer corresponds to a type of information, and multiple layers are combined according to different situations.
- multiple layers may be combined into a complete AOD off-screen image, and each of the multiple layers may be changed according to different trigger factors.
- the display element is the foreground window, and its trigger factors may include user location/travel information, or user click operations, etc.
- Layer 1 corresponds to travel information (such as business trip, office, home, etc.), and is distinguished by different window shapes. For example, as the user's location (at home, at work, on a trip) changes, layer 1 may present different window forms.
- the display element is a scene pattern
- its trigger factors may include: the application opened by the mobile phone, the number of steps counted, the heart rate value, or the user's click operation.
- Layer 2 corresponds to scene information (such as listening to music, exercising, watching videos, etc.), and is distinguished by different scene patterns. For example, layer 2 can switch scene patterns every time the window is closed and reopened.
- the display element is a background pattern, such as the sky as the background, and its triggering factors may include: time, season, temperature or weather.
- Layer 3 corresponds to weather time information (such as weather, morning and evening, season, temperature, etc.), which are distinguished by different sky patterns. For example, layer 3 could represent different sky states throughout the day.
- the pattern displayed on the screen can dynamically change with different scenes, which improves the screen-off display effect .
- the electronic device is a mobile phone as an example, and the relevant structure of the mobile phone display screen only exemplifies the part related to the embodiment of the present application, and the description of the relevant structure of the mobile phone display screen and related
- the conceptual explanation may be limited due to the specific conditions of the embodiment of the application, but it does not mean that the application is limited to the specific conditions, and there may be differences in the specific conditions of different embodiments, which are not specifically limited here.
- liquid crystal display LCD
- organic light-emitting diode OLED
- the structure of the LCD screen is to place a liquid crystal cell between two parallel glass substrates, a thin film field effect transistor (thin film transistor, TFT) is arranged on the lower substrate glass, and a color filter is arranged on the upper substrate glass.
- TFT thin film field effect transistor
- the signal and voltage are changed to control the rotation direction of the liquid crystal molecules, so as to control whether the polarized light of each pixel on the screen is emitted or not to achieve the display purpose.
- the OLED screen uses a very thin organic material coating (also known as an organic light-emitting layer) and a glass substrate. When an electric current passes through, these organic materials will emit light.
- AOD mode also called AOD state
- some areas on the mobile phone display screen can display clock, date, notification and other information.
- the characteristic of the OLED screen is that each pixel on the screen can emit light independently.
- the principle of AOD is to light up only some pixels on the OLED screen to display the above clock, date, notification and other information.
- the LCD screen is to draw a small area on the entire display screen, and the above-mentioned clock, date, notification and other information are displayed in this small area, while other areas except this small area are displayed in pure black.
- the embodiment of the present application does not limit the display screen type of the electronic device, for example, an LCD screen or an OLED screen may be used.
- the display screen of the mobile phone may also be covered with a touch panel, and the input and output of information may be realized through the touch panel.
- the display screen of the mobile phone may also include an area of fingerprints under the screen (such as optical fingerprints, ultrasonic fingerprints, etc.), which is not limited here.
- the electronic device implementing the method includes hardware structures and/or software modules corresponding to each function.
- the present application can be implemented in the form of hardware or a combination of hardware and computer software. Whether a certain function is executed by hardware or computer software drives hardware depends on the specific application and design constraints of the technical solution. Professionals may use different methods to implement the described functions for each specific application, but such implementation should not be regarded as exceeding the protection scope of the present application.
- the embodiment of the present application may divide the electronic device into functional modules according to the above method examples.
- each functional module may be divided corresponding to each function, or two or more functions may be integrated into one processing module.
- the above-mentioned integrated modules can be implemented in the form of hardware or in the form of software function modules. It should be noted that the division of modules in the embodiment of the present application is schematic, and is only a logical function division, and there may be other feasible division methods in actual implementation. In the following, description will be made by taking the division of each functional module corresponding to each function as an example.
- FIG. 10 is a schematic block diagram of a control device 800 for screen-off display provided by an embodiment of the present application.
- the apparatus 800 may be used to perform the actions performed by the electronic device in the above method embodiments.
- the device 800 includes a display unit 810 .
- the display unit 810 is configured to display an off-screen image when the device 800 is in the off-screen state, the off-screen image includes multiple layers, each of the multiple layers includes different display elements;
- the display unit 810 is further configured to update and display the display elements on the first layer in the off-screen image when the device 800 meets the preset conditions, and the display elements on the first layer include a foreground window; wherein, the The preset conditions include: the device 800 detects that the location information of the user changes, or the device 800 receives the user's first operation on the off-screen image;
- the display unit 810 is further configured to update and display the display elements on the second layer in the off-screen image when the device 800 detects that the user behavior information changes, and the display elements on the second layer include scene patterns;
- the display unit 810 is further configured to update and display the display elements on the third layer in the off-screen image when the device 800 detects that the time and weather information changes, and the display elements on the third layer include a background pattern.
- each layer corresponds to a type of information
- each layer can change according to different information trigger factors
- these multiple layers can be dynamically superimposed and combined according to different scenarios , so multiple layers can be combined into a dynamically changing AOD off-screen image.
- the device can display off-screen images on the screen, including various information such as time, date, notification message, incoming call reminder message, power indicator, user behavior and weather, and the off-screen Images are updated dynamically.
- the off-screen display effect that usually displays a fixed picture or a section of animation in the prior art
- the pattern displayed on the off-screen can dynamically change with different scenes, which improves the off-screen display effect .
- the user location information includes: being at home, at a company, or traveling outside.
- the user behavior information includes: an entertainment state, a learning state, and/or an exercise state.
- the temporal weather information includes: early/mid/late time, season, and/or weather.
- the apparatus 800 may further include an acquiring unit 820 and a processing unit 830;
- An acquisition unit 820 configured to acquire M type information
- the processing unit 830 is configured to determine the display elements corresponding to each type of information according to each type of information in the M types of information; and generate M different display elements according to the display elements corresponding to each of the M types of information. layers; and superimposing the M layers with different display elements to obtain an off-screen image.
- the display unit 810 displays the above-mentioned off-screen image.
- the obtaining unit 820 may obtain the M type information in real time or periodically.
- the M types of information include user location information, user behavior information, and time and weather information;
- the display element corresponding to the user positioning information is a foreground window; wherein, if the user positioning information is different, the corresponding foreground windows are different;
- the display elements corresponding to the user behavior information are scene patterns; where the user behavior information is different, the corresponding scene patterns are different;
- the display element corresponding to the time weather information is a background pattern; where the time weather information is different, the corresponding background pattern is different.
- processing unit 830 is specifically configured to:
- the layer with the background pattern corresponding to the time weather information is used as the third layer;
- the M layers include the first layer, the second layer and the third layer.
- the display unit 810 is further configured to: when the device 800 is in a screen-off state, display at least one of time, date, notification message, incoming call reminder message, and battery indicator.
- the display unit 810 is specifically configured to: superimpose and display multiple layers in the off-screen image according to a preset layer superposition order.
- the preset layer stacking sequence may be that the first layer is located at the top layer, the second layer is located between the first layer and the third layer, and the third layer is located at the bottom layer.
- the processing unit 830 is further configured to: update the layer superimposition order in response to a second user operation; or update the layer superposition order periodically.
- the display unit 810 is specifically configured to:
- a shutter effect is displayed in the foreground window located on the first layer in the screen-off image.
- a shutter effect is displayed in part or all of the foreground window.
- the display unit 810 is also used to:
- the processing unit 830 is further configured to: determine a foreground window corresponding to the user positioning information according to the user positioning information and a first preset relationship;
- the first preset relationship is a preset corresponding relationship between the user positioning information and a foreground window with a specific shape or size.
- the processing unit 830 is further configured to: determine a scene pattern corresponding to the user behavior information according to the user behavior information and a second preset relationship;
- the second preset relationship is a preset corresponding relationship between the user behavior information and scene patterns with specific content.
- the processing unit 830 is further configured to: determine the behavior information of the user acting on the device 800 according to the application program running on the device 800 as the user behavior information.
- the processing unit 830 is specifically configured to: acquire user motion data according to the running application program of the device 800; and when the device 800 determines that the user motion data satisfies a preset motion condition, User behavior information including exercise status;
- the user motion data includes the user's heart rate value and/or the number of steps within a preset time period.
- the processing unit 830 is further configured to: determine a background pattern corresponding to the temporal weather information according to the temporal weather information and a third preset relationship;
- the third preset relationship is a preset corresponding relationship between the temporal weather information and a background pattern with a specific pattern, color and/or brightness.
- the display unit 810 is specifically configured to: display the off-screen image according to the first off-screen display manner;
- the first off-screen display mode includes any one of the following: light touch display mode, timing display mode or all-day display mode.
- the processing unit 830 is further configured to: set the screen-off display manner as the first screen-off display manner in response to a third user operation.
- the processing unit 830 is further configured to: respond to the user's fourth operation, enabling a screen-off display function.
- the display unit 810 is further configured to: in response to the fifth operation of the user, display a setting interface for the off-screen display function, where the setting interface includes a preset gallery; wherein the preset gallery includes a device 800 locally stored images and/or images stored in a web server.
- the processing unit 830 is further configured to: in response to the sixth operation of the user selecting an image from the preset gallery, use the selected image as a display element in the target layer in the off-screen image.
- the device 800 may correspond to the implementation of the method described in the embodiment of the present application, and the above-mentioned and other operations and/or functions of the units in the device 800 are for realizing the corresponding flow of the method, and for the sake of brevity, are not described here Let me repeat.
- FIG. 11 is a schematic structural diagram of an electronic device 900 provided by an embodiment of the present application.
- the electronic device 900 may include a processor 910, an external memory interface 920, an internal memory 921, a universal serial bus (universal serial bus, USB) interface 930, a charge management module 940, a power management unit 941, a battery 942, an antenna 1, and an antenna 2.
- SIM subscriber identification module
- the sensor module 980 may include a pressure sensor 980A, a gyroscope sensor 980B, an air pressure sensor 980C, a magnetic sensor 980D, an acceleration sensor 980E, a distance sensor 980F, a proximity light sensor 980G, a fingerprint sensor 980H, a temperature sensor 980I, a touch sensor 980J, and ambient light sensor 980K and bone conduction sensor 980L and the like.
- the structure illustrated in the embodiment of the present application does not constitute a specific limitation on the electronic device 900 .
- the electronic device 900 may include more or fewer components than shown in the figure, or combine certain components, or separate certain components, or arrange different components.
- the illustrated components can be realized in hardware, software or a combination of software and hardware.
- the processor 910 may include one or more processing units, for example: the processor 910 may include an application processor (application processor, AP), a modem processor, a graphics processing unit (graphics processing unit, GPU), an image signal processor (image signal processor, ISP), controller, memory, video codec, digital signal processor (digital signal processor, DSP), baseband processor, and/or neural network processor (neural-network processing unit, NPU) wait. Wherein, different processing units may be independent devices, or may be integrated in one or more processors. Wherein, the controller may be the nerve center and command center of the electronic device 900 . The controller can generate an operation control signal according to the instruction opcode and timing signal, and complete the control of fetching and executing the instruction.
- a memory may also be provided in the processor 910 for storing instructions and data.
- the memory in processor 910 is a cache memory.
- the memory may hold instructions or data that the processor 910 has just used or recycled. If the processor 910 needs to use the instruction or data again, it can be directly recalled from the memory. Repeated access is avoided, and the waiting time of the processor 910 is reduced, thereby improving the efficiency of the system.
- processor 910 may include one or more interfaces.
- the interface may include an integrated circuit (inter-integrated circuit, I2C) interface, an integrated circuit built-in audio (inter-integrated circuit sound, I2S) interface, a pulse code modulation (pulse code modulation, PCM) interface, a universal asynchronous transceiver (universal asynchronous receiver/transmitter, UART) interface, mobile industry processor interface (mobile industry processor interface, MIPI), general-purpose input and output (general-purpose input/output, GPIO) interface, subscriber identity module (subscriber identity module, SIM) interface, And/or a universal serial bus (universal serial bus, USB) interface, etc.
- I2C integrated circuit
- I2S integrated circuit built-in audio
- PCM pulse code modulation
- PCM pulse code modulation
- UART universal asynchronous transceiver
- mobile industry processor interface mobile industry processor interface
- MIPI mobile industry processor interface
- general-purpose input and output general-purpose input/output
- GPIO general
- the interface connection relationship between the modules shown in the embodiment of the present application is only a schematic illustration, and does not constitute a structural limitation of the electronic device 900 .
- the electronic device 900 may also adopt different interface connection manners in the foregoing embodiments, or a combination of multiple interface connection manners.
- the charging management module 940 is configured to receive charging input from the charger.
- the charger can be a wireless charger or a wired charger.
- the charging management module 940 can receive the charging input of the wired charger through the USB interface 930 .
- the charging management module 940 may receive wireless charging input through a wireless charging coil of the electronic device 900 . While the charging management module 940 is charging the battery 942 , it can also provide power for electronic devices through the power management unit 941 .
- the power management unit 941 is used to connect the battery 942 , the charging management module 940 and the processor 910 .
- the power management unit 941 receives the input of the battery 942 and/or the charging management module 940, and supplies power for the processor 910, the internal memory 921, the external memory, the display screen 994, the camera 993 and the wireless communication module 960, etc.
- the power management unit 941 can also be used to monitor parameters such as battery capacity, battery cycle times, and battery health status (leakage, impedance).
- the power management unit 941 may also be set in the processor 910 .
- the power management unit 941 and the charging management module 940 can also be set in the same device.
- the wireless communication function of the electronic device 900 may be realized by the antenna 1, the antenna 2, the mobile communication module 950, the wireless communication module 960, a modem processor, a baseband processor, and the like.
- Antenna 1 and Antenna 2 are used to transmit and receive electromagnetic wave signals.
- Each antenna in electronic device 900 may be used to cover single or multiple communication frequency bands. Different antennas can also be multiplexed to improve the utilization of the antennas.
- Antenna 1 can be multiplexed as a diversity antenna of a wireless local area network.
- the antenna may be used in conjunction with a tuning switch.
- the mobile communication module 950 can provide wireless communication solutions including 2G/3G/4G/5G applied on the electronic device 900 .
- the mobile communication module 950 may include at least one filter, switch, power amplifier, low noise amplifier (low noise amplifier, LNA) and the like.
- the mobile communication module 950 can receive electromagnetic waves through the antenna 1, filter and amplify the received electromagnetic waves, and send them to the modem processor for demodulation.
- the mobile communication module 950 can also amplify the signals modulated by the modem processor, and convert them into electromagnetic waves through the antenna 1 for radiation.
- at least part of the functional modules of the mobile communication module 950 may be set in the processor 910 .
- at least part of the functional modules of the mobile communication module 950 and at least part of the modules of the processor 910 may be set in the same device.
- a modem processor may include a modulator and a demodulator.
- the modulator is used for modulating the low-frequency baseband signal to be transmitted into a medium-high frequency signal.
- the demodulator is used to demodulate the received electromagnetic wave signal into a low frequency baseband signal. Then the demodulator sends the demodulated low-frequency baseband signal to the baseband processor for processing.
- the low-frequency baseband signal is passed to the application processor after being processed by the baseband processor.
- the application processor outputs a sound signal through an audio device (not limited to a speaker 970A, a receiver 970B, etc.), or displays an image or video through a display screen 994 .
- the modem processor may be a stand-alone device. In some other embodiments, the modem processor may be independent from the processor 910, and be set in the same device as the mobile communication module 950 or other functional modules.
- the wireless communication module 960 can provide wireless communication including WLAN (such as Wi-Fi), BT, global navigation satellite system (global navigation satellite system, GNSS), FM, NFC, IR or general 2.4G/5G applied on the electronic device 900. technology and other wireless communication solutions.
- the wireless communication module 960 may be one or more devices integrating at least one communication processing module.
- the wireless communication module 960 receives electromagnetic waves via the antenna 2 , frequency-modulates and filters the electromagnetic wave signals, and sends the processed signals to the processor 910 .
- the wireless communication module 960 can also receive the signal to be transmitted from the processor 910 , frequency-modulate and amplify it, and convert it into electromagnetic waves through the antenna 2 for radiation.
- the wireless communication module 960 may be a Wi-Fi and/or Bluetooth chip.
- the electronic device 900 can establish a connection with chips of electronic devices such as wireless earphones through the chip, so as to implement wireless communication and business processing between the electronic device 900 and other electronic devices through the connection.
- the Bluetooth chip can usually support BR/EDR Bluetooth and BLE.
- the antenna 1 of the electronic device 900 is coupled to the mobile communication module 950, and the antenna 2 is coupled to the wireless communication module 960, so that the electronic device 900 can communicate with the network and other devices through wireless communication technology.
- Wireless communication technologies may include global system for mobile communications (GSM), general packet radio service (GPRS), code division multiple access (CDMA), broadband code division Multiple access (wideband code division multiple access, WCDMA), time-division code division multiple access (TDSCDMA), long term evolution (LTE), BT, GNSS, WLAN, NFC, FM, and / or IR technology etc.
- GNSS can include global positioning system (global positioning system, GPS), global navigation satellite system (global navigation satellite system, GLONASS), Beidou satellite navigation system (beidou navigation satellite system, BDS), quasi-zenith satellite system (quasi-zenith) satellite system (QZSS) and/or satellite based augmentation systems (SBAS).
- GPS global positioning system
- GLONASS global navigation satellite system
- Beidou satellite navigation system beidou navigation satellite system, BDS
- quasi-zenith satellite system quasi-zenith satellite system
- QZSS quasi-zenith satellite system
- SBAS satellite based augmentation systems
- the electronic device 900 implements a display function through a GPU, a display screen 994, an application processor, and the like.
- the GPU is a microprocessor for image processing, connected to the display screen 994 and the application processor. GPUs are used to perform mathematical and geometric calculations for graphics rendering.
- Processor 910 may include one or more GPUs that execute program instructions to generate or alter display information.
- the display screen 994 is used to display images, videos and the like.
- Display 994 includes a display panel.
- the display panel can be a liquid crystal display (LCD), an organic light-emitting diode (organic light-emitting diode,
- the electronic device 900 may include 1 or N display screens 994, where N is a positive integer greater than 1.
- the electronic device 900 can realize the shooting function through an ISP, a camera 993 , a video codec, a GPU, a display screen 994 , an application processor, and the like.
- the ISP is used to process the data fed back by the camera 993. For example, when taking a picture, open the shutter, the light is transmitted to the photosensitive element of the camera through the lens, and the optical signal is converted into an electrical signal, and the photosensitive element of the camera transmits the electrical signal to the ISP for processing, and converts it into an image visible to the naked eye.
- ISP can also perform algorithm optimization on image noise, brightness, and skin tone. ISP can also optimize the exposure, color temperature and other parameters of the shooting scene.
- the ISP may be located in the camera 993 .
- Camera 993 is used to capture still images or video.
- the object generates an optical image through the lens and projects it to the photosensitive element.
- the photosensitive element may be a charge coupled device (CCD) or a complementary metal-oxide-semiconductor (CMOS) phototransistor.
- CMOS complementary metal-oxide-semiconductor
- the photosensitive element converts the light signal into an electrical signal, and then transmits the electrical signal to the ISP to convert it into a digital image signal.
- the ISP outputs the digital image signal to the DSP for processing.
- DSP converts digital image signals into standard RGB, YUV and other image signals.
- the electronic device 900 may include 1 or N cameras 993, where N is a positive integer greater than 1.
- Digital signal processors are used to process digital signals. In addition to digital image signals, they can also process other digital signals. For example, when the electronic device 900 selects a frequency point, the digital signal processor is used to perform Fourier transform on the energy of the frequency point.
- Video codecs are used to compress or decompress digital video.
- the electronic device 900 may support one or more video codecs.
- the electronic device 900 can play or record videos in various encoding formats, for example: moving picture experts group (moving picture experts group, MPEG) 1, MPEG2, MPEG3, MPEG4 and so on.
- MPEG moving picture experts group
- the NPU is a neural-network (NN) computing processor.
- NN neural-network
- Applications such as intelligent cognition of the electronic device 900 can be implemented through the NPU, such as image recognition, face recognition, speech recognition, text understanding, and the like.
- the external memory interface 920 may be used to connect an external memory card, such as a Micro SD card, to expand the storage capacity of the electronic device 900.
- the external memory card communicates with the processor 910 through the external memory interface 920 to implement a data storage function. Such as saving music, video and other files in the external memory card.
- the internal memory 921 may be used to store computer-executable program codes including instructions.
- the processor 910 executes various functional applications and data processing of the electronic device 900 by executing instructions stored in the internal memory 921 .
- the internal memory 921 may include an area for storing programs and an area for storing data.
- the stored program area can store an operating system, at least one application program required by a function (such as a sound playing function, an image playing function, etc.) and the like.
- the storage data area can store data (such as audio data, phone book, etc.) created during the use of the electronic device 900 .
- the internal memory 921 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one magnetic disk storage device, flash memory device, universal flash storage (universal flash storage, UFS) and the like.
- the processor 910 may be configured to execute the above program codes, and call related modules to realize the functions of the electronic device in the embodiment of the present application. For example, multiple communication links are established with another electronic device; when there is a preset service (such as a file transfer service, etc.), the data of the preset service is transmitted with another electronic device through multiple communication links.
- a preset service such as a file transfer service, etc.
- the electronic device 900 can realize the audio function through the speaker 970A, the receiver 970B, the microphone 970C, the earphone interface 970D, and the application processor in the audio module 970 . Such as music playback, recording, etc.
- the audio module 970 is used to convert digital audio information into analog audio signal output, and is also used to convert analog audio input into digital audio signal.
- the audio module 970 may also be used to encode and decode audio signals.
- the audio module 970 may be set in the processor 910 , or some functional modules of the audio module 970 may be set in the processor 910 .
- Loudspeaker 970A also called “horn” is used to convert audio electrical signals into sound signals.
- Electronic device 900 can listen to music through speaker 970A, or listen to hands-free calls.
- Receiver 970B also called “earpiece” is used to convert audio electrical signals into sound signals.
- the receiver 970B can be placed close to the human ear to receive the voice.
- Microphone 970C also called “microphone” is used to convert sound signal into electrical signal. When making a call or sending a voice message, the user can approach the microphone 970C to make a sound through the mouth, and input the sound signal to the microphone 970C.
- the electronic device 900 may be provided with at least one microphone 970C. In other embodiments, the electronic device 900 may be provided with two microphones 970C, which may also implement a noise reduction function in addition to collecting sound signals. In some other embodiments, the electronic device 900 can also be provided with three, four or more microphones 970C, so as to collect sound signals, reduce noise, identify sound sources, and realize directional recording functions, etc.
- the earphone interface 970D is used to connect wired earphones.
- the earphone interface 970D may be a USB interface 930, or a 3.5mm open mobile terminal platform (OMTP) standard interface, or a cellular telecommunications industry association of the USA (CTIA) standard interface.
- OMTP open mobile terminal platform
- CTIA cellular telecommunications industry association of the USA
- the pressure sensor 980A is used to sense the pressure signal and convert the pressure signal into an electrical signal.
- pressure sensor 980A may be located on display screen 994 .
- pressure sensors 980A such as resistive pressure sensors, inductive pressure sensors, and capacitive pressure sensors.
- a capacitive pressure sensor may be comprised of at least two parallel plates with conductive material.
- the electronic device 900 may also calculate the touched position according to the detection signal of the pressure sensor 980A.
- touch operations acting on the same touch position but with different touch operation intensities may correspond to different operation instructions. For example: when a touch operation with a touch operation intensity less than the first pressure threshold acts on the short message application icon, an instruction to view short messages is executed. When a touch operation whose intensity is greater than or equal to the first pressure threshold acts on the icon of the short message application, the instruction of creating a new short message is executed.
- the gyro sensor 980B can be used to determine the motion posture of the electronic device 900 .
- the angular velocity of the electronic device 900 about three axes can be determined by the gyro sensor 980B.
- the gyro sensor 980B can be used for image stabilization. Exemplarily, when the shutter is pressed, the gyro sensor 980B detects the shaking angle of the electronic device 900, calculates the distance that the lens module needs to compensate according to the angle, and allows the lens to counteract the shaking of the electronic device 900 through reverse movement to achieve anti-shake.
- the gyroscope sensor 980B can also be used for navigation and somatosensory game scenes.
- the acceleration sensor 980E can detect the acceleration of the electronic device 900 in various directions (generally three axes). When the electronic device 900 is stationary, the magnitude and direction of gravity can be detected. It can also be used to identify the posture of electronic devices, and can be used in applications such as horizontal and vertical screen switching, pedometers, etc.
- the distance sensor 980F is used to measure distance.
- the electronic device 900 can measure the distance by infrared or laser. In some embodiments, when shooting a scene, the electronic device 900 can use the distance sensor 980F to measure distance to achieve fast focusing.
- the proximity light sensor 980G may include, for example, a light-emitting diode (LED) and a light detector, such as a photodiode.
- the light emitting diodes may be infrared light emitting diodes.
- the electronic device 900 emits infrared light through the light emitting diode.
- Electronic device 900 uses photodiodes to detect infrared reflected light from nearby objects. When sufficient reflected light is detected, it may be determined that there is an object near the electronic device 900 . When insufficient reflected light is detected, the electronic device 900 may determine that there is no object near the electronic device 900 .
- the electronic device 900 can use the proximity light sensor 980G to detect that the user holds the electronic device 900 close to the ear to make a call, so as to automatically turn off the screen to save power.
- the proximity light sensor 980G can also be used in leather case mode, automatic unlock and lock screen in pocket mode.
- the ambient light sensor 980K is used for sensing ambient light brightness.
- the electronic device 900 can adaptively adjust the brightness of the display screen 994 according to the perceived ambient light brightness.
- the ambient light sensor 980K can also be used to automatically adjust the white balance when taking pictures.
- the ambient light sensor 980K can also cooperate with the proximity light sensor 980G to detect whether the electronic device 900 is in the pocket, so as to prevent accidental touch.
- the air pressure sensor 980C is used to measure air pressure.
- the electronic device 900 calculates the altitude based on the air pressure value measured by the air pressure sensor 980C to assist positioning and navigation.
- the magnetic sensor 980D includes a Hall sensor.
- the electronic device 900 may detect displacement of the electronic device 900 using the magnetic sensor 980D.
- the Hall sensor can use a magnet to form a linear trapezoidal magnetic field (or called a ramp magnetic field).
- the displacement change of the Hall sheet in the linear magnetic field is consistent with the change of the magnetic field intensity, and the formed Hall potential is also consistent with The displacement is proportional, and the electronic device 900 can measure the displacement by obtaining the Hall potential.
- the fingerprint sensor 980H is used to collect fingerprints.
- the electronic device 900 can use the collected fingerprint features to unlock fingerprints, access application locks, take photos with fingerprints, answer incoming calls with fingerprints, and the like.
- the temperature sensor 980I is used to detect temperature.
- the electronic device 900 uses the temperature detected by the temperature sensor 980I to implement a temperature processing strategy. For example, when the temperature reported by the temperature sensor 980I exceeds the threshold, the electronic device 900 may reduce the performance of a processor located near the temperature sensor 980I, so as to reduce power consumption and implement thermal protection.
- the electronic device 900 heats the battery 942 to avoid abnormal shutdown of the electronic device 900 caused by the low temperature.
- the electronic device 900 boosts the output voltage of the battery 942 to avoid abnormal shutdown caused by low temperature.
- Touch sensor 980J also known as "touch panel”.
- the touch sensor 980J can be arranged on the display screen 994, and the touch sensor 980J and the display screen 994 form a touch screen, also called “touch screen”.
- the touch sensor 980J is used to detect a touch operation on or near it.
- the touch sensor can pass the detected touch operation to the application processor to determine the type of touch event.
- Visual output related to touch operations can be provided through the display screen 994 .
- the touch sensor 980J may also be disposed on the surface of the electronic device 900 , which is different from the position of the display screen 994 .
- the bone conduction sensor 980L can acquire vibration signals.
- the bone conduction sensor 980L can acquire the vibration signal of the vibrating bone mass of the human voice.
- the bone conduction sensor 980L can also touch the human pulse and receive the blood pressure beating signal.
- the bone conduction sensor 980L can also be disposed in the earphone, combined into a bone conduction earphone.
- the audio module 970 can analyze the voice signal based on the vibration signal of the vibrating bone mass of the vocal part acquired by the bone conduction sensor 980L, so as to realize the voice function.
- the application processor can analyze the heart rate information based on the blood pressure beating signal acquired by the bone conduction sensor 980L, so as to realize the heart rate detection function.
- the keys 990 include a power key, a volume key, and the like.
- the key 990 may be a mechanical key. It can also be a touch button.
- the electronic device 900 may receive key input and generate key signal input related to user settings and function control of the electronic device 900 .
- the motor 991 can generate vibration prompts.
- the motor 991 can be used for incoming call vibration prompts, and can also be used for touch vibration feedback.
- touch operations applied to different applications may correspond to different vibration feedback effects.
- the motor 991 can also correspond to different vibration feedback effects for touch operations on different areas of the display screen 994 .
- Different application scenarios for example: time reminder, receiving information, alarm clock, games, etc.
- the touch vibration feedback effect can also support customization.
- the indicator 992 can be an indicator light, and can be used to indicate charging status, power change, and can also be used to indicate messages, missed calls, notifications, and the like.
- the SIM card interface 995 is used for connecting a SIM card.
- the SIM card can be connected and separated from the electronic device 900 by inserting it into the SIM card interface 995 or pulling it out from the SIM card interface 995 .
- the electronic device 900 may support 1 or N SIM card interfaces, where N is a positive integer greater than 1.
- SIM card interface 995 can support Nano SIM card, Micro SIM card, SIM card, etc.
- the same SIM card interface 995 can insert multiple cards at the same time. The types of multiple cards may be the same or different.
- the SIM card interface 995 is also compatible with different types of SIM cards.
- the SIM card interface 995 is also compatible with external memory cards.
- the electronic device 900 interacts with the network through the SIM card to implement functions such as calling and data communication.
- the electronic device 900 adopts an eSIM, that is, an embedded SIM card.
- the eSIM card can be embedded in the electronic device 900 and cannot be separated from the electronic device 900 .
- the electronic device 900 may be a mobile terminal or a non-mobile terminal.
- the electronic device 900 may be a mobile phone, a tablet computer, a notebook computer, a handheld computer, a vehicle terminal, a wearable device, an ultra-mobile personal computer (ultra-mobile personal computer, UMPC), a netbook or a personal digital assistant (personal digital assistant) , PDA), wireless earphones, wireless bracelets, wireless smart glasses, wireless watches, augmented reality (augmented reality, AR) / virtual reality (virtual reality, VR) equipment, desktop computers, smart home appliances (such as TVs, speakers, refrigerators, air purifiers, air conditioners, rice cookers), etc.
- the electronic device 900 may also be collectively referred to as an Internet of Things (Internet of Things, IoT) device.
- IoT Internet of Things
- the electronic device 900 shown in FIG. 11 may correspond to the device 800 shown in FIG. 10 .
- the processor 910, the display screen 994 and the sensor module 980 in the electronic device 900 shown in FIG. 11 may respectively correspond to the processing unit 830, the display unit 810 and the acquisition unit 820 in the apparatus 800 in FIG. 10 .
- the processor 910 executes computer-executable instructions in the memory 921 to execute the operation steps of the above-mentioned method through the electronic device 900 .
- the present application provides a chip, the chip is coupled with a memory, and the chip is used to read and execute computer programs or instructions stored in the memory, so as to execute the methods in the foregoing embodiments.
- the present application provides an electronic device, which includes a chip, and the chip is used to read and execute computer programs or instructions stored in a memory, so that the methods in each embodiment are executed.
- the embodiment of the present application also provides a computer-readable medium, the computer-readable medium stores program codes, and when the computer program codes run on the computer, the computer executes the above aspects method in .
- the embodiments of the present application further provide a computer program product, the computer program product including: computer program code, when the computer program code is run on the computer, the computer is made to execute the above aspects Methods.
- the electronic device includes a hardware layer, an operating system layer running on the hardware layer, and an application layer running on the operating system layer.
- the hardware layer may include hardware such as a central processing unit (central processing unit, CPU), a memory management unit (memory management unit, MMU), and memory (also called main memory).
- the operating system of the operating system layer can be any one or more computer operating systems that realize business processing through processes, for example, Linux operating system, Unix operating system, Android operating system, iOS operating system, or windows operating system.
- the application layer may include applications such as browsers, address books, word processing software, and instant messaging software.
- the embodiment of the present application does not specifically limit the specific structure of the execution subject of the method provided in the embodiment of the present application, as long as the program that records the code of the method provided in the embodiment of the present application can be executed according to the method provided in the embodiment of the present application Just communicate.
- the subject of execution of the method provided by the embodiment of the present application may be an electronic device, or a functional module in the electronic device capable of invoking a program and executing the program.
- Computer-readable media may include, but are not limited to, magnetic storage devices (such as hard disks, floppy disks, or tapes, etc.), optical disks (such as compact discs (compact disc, CD), digital versatile discs (digital versatile disc, DVD), etc. ), smart cards and flash memory devices (for example, erasable programmable read-only memory (EPROM), card, stick or key drive, etc.).
- magnetic storage devices such as hard disks, floppy disks, or tapes, etc.
- optical disks such as compact discs (compact disc, CD), digital versatile discs (digital versatile disc, DVD), etc.
- smart cards and flash memory devices for example, erasable programmable read-only memory (EPROM), card, stick or key drive, etc.
- Various storage media described herein can represent one or more devices and/or other machine-readable media for storing information.
- the term "machine-readable medium” may include, but is not limited to, wireless channels and various other media capable of storing, containing and/or carrying instructions and/or data.
- processors mentioned in the embodiments of the present application may be a central processing unit (central processing unit, CPU), and may also be other general-purpose processors, digital signal processors (digital signal processors, DSPs), application-specific integrated circuits ( application specific integrated circuit (ASIC), off-the-shelf programmable gate array (field programmable gate array, FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc.
- a general-purpose processor may be a microprocessor, or the processor may be any conventional processor, or the like.
- the memory mentioned in the embodiments of the present application may be a volatile memory or a nonvolatile memory, or may include both volatile and nonvolatile memories.
- the non-volatile memory can be read-only memory (read-only memory, ROM), programmable read-only memory (programmable ROM, PROM), erasable programmable read-only memory (erasable PROM, EPROM), electrically programmable Erases programmable read-only memory (electrically EPROM, EEPROM) or flash memory.
- the volatile memory may be random access memory (RAM).
- RAM can be used as an external cache.
- RAM may include the following forms: static random access memory (static RAM, SRAM), dynamic random access memory (dynamic RAM, DRAM), synchronous dynamic random access memory (synchronous DRAM, SDRAM) , double data rate synchronous dynamic random access memory (double data rate SDRAM, DDR SDRAM), enhanced synchronous dynamic random access memory (enhanced SDRAM, ESDRAM), synchronous connection dynamic random access memory (synchlink DRAM, SLDRAM) and Direct memory bus random access memory (direct rambus RAM, DR RAM).
- static random access memory static random access memory
- dynamic RAM dynamic random access memory
- DRAM synchronous dynamic random access memory
- SDRAM synchronous DRAM
- double data rate SDRAM double data rate SDRAM
- DDR SDRAM double data rate SDRAM
- ESDRAM enhanced synchronous dynamic random access memory
- SLDRAM synchronous connection dynamic random access memory
- Direct memory bus random access memory direct rambus RAM, DR RAM
- the processor is a general-purpose processor, DSP, ASIC, FPGA or other programmable logic devices, discrete gate or transistor logic devices, or discrete hardware components
- the memory storage module may be integrated in the processor.
- memories described herein are intended to include, but are not limited to, these and any other suitable types of memories.
- the disclosed systems, devices and methods may be implemented in other ways.
- the device embodiments described above are only illustrative.
- the division of the units is only a logical function division. In actual implementation, there may be other division methods.
- multiple units or components can be combined or May be integrated into another system, or some features may be ignored, or not implemented.
- the mutual coupling or direct coupling or communication connection shown or discussed may be through some interfaces, and the indirect coupling or communication connection of devices or units may be in electrical, mechanical or other forms.
- the units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place, or may be distributed to multiple network units. Part or all of the units can be selected according to actual needs to achieve the purpose of the solution of this embodiment.
- each functional unit in each embodiment of the present application may be integrated into one unit, each unit may exist separately physically, or two or more units may be integrated into one unit.
- the functions are realized in the form of software functional units and sold or used as independent products, they can be stored in a computer-readable storage medium.
- the computer software product includes several instructions, which are used to make a computer device (which may be a personal computer, server, or network device, etc.) execute all or part of the steps of the methods described in the various embodiments of the present application.
- the aforementioned storage medium may include, but is not limited to: various media capable of storing program codes such as U disk, mobile hard disk, ROM, RAM, magnetic disk or optical disk.
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Abstract
Description
Claims (20)
- 一种熄屏显示的控制方法,其特征在于,包括:当电子设备处于熄屏状态时,所述电子设备显示熄屏图像,所述熄屏图像包括多个图层,所述多个图层中的各个图层包含不同的显示要素;当所述电子设备满足预设条件时,所述电子设备更新显示所述熄屏图像中位于第一图层的显示要素,所述第一图层的显示要素包括前景窗口;其中,所述预设条件包括:所述电子设备检测到用户定位信息发生变化,或者所述电子设备接收到用户在所述熄屏图像上的第一操作;或者,当所述电子设备检测到用户行为信息发生变化时,所述电子设备更新显示所述熄屏图像中位于第二图层的显示要素,所述第二图层的显示要素包括场景图案;或者,当所述电子设备检测到时间气象信息发生变化时,所述电子设备更新显示所述熄屏图像中位于第三图层的显示要素,所述第三图层的显示要素包括背景图案。
- 根据权利要求1所述的方法,其特征在于,所述用户定位信息包括:在家,在公司,或者在外出行;所述用户行为信息包括:娱乐状态,学习状态,和/或运动状态;所述时间气象信息包括:早/中/晚时间,季节,和/或天气。
- 根据权利要求1或2所述的方法,其特征在于,所述方法还包括:当所述电子设备处于熄屏状态时,所述电子设备还显示时间、日期、通知消息、来电提醒消息和电量标识中的至少一项。
- 根据权利要求1至3中任一项所述的方法,其特征在于,所述电子设备显示熄屏图像,包括:所述电子设备将熄屏图像中的多个图层,按照预设的图层叠加顺序进行叠加显示。
- 根据权利要求4所述的方法,其特征在于,所述方法还包括:响应于用户的第二操作,所述电子设备更新所述图层叠加顺序;或者,所述电子设备周期性地更新所述图层叠加顺序。
- 根据权利要求1至5中任一项所述的方法,其特征在于,所述当所述电子设备满足第一预设条件时,所述电子设备更新显示所述熄屏图像中位于第一图层的显示要素,所述第一图层的显示要素包括前景窗口,包括:响应于用户在所述熄屏图像上的第一操作,所述电子设备将所述熄屏图像中位于所述第一图层的前景窗口从关闭状态切换到开启状态;或者,响应于用户在所述熄屏图像上的第一操作,所述电子设备将所述熄屏图像中位于所述第一图层的前景窗口从开启状态切换到关闭状态;或者,响应于用户在所述熄屏图像上的第一操作,所述电子设备在所述熄屏图像中位于所述第一图层的前景窗口中显示百叶窗效果。
- 根据权利要求6所述的方法,其特征在于,所述方法还包括:当所述熄屏图像中位于所述第一图层的前景窗口从关闭状态切换到开启状态时,所述电子设备更新显示位于所述第二图层的场景图案。
- 根据权利要求1至7中任一项所述的方法,其特征在于,在所述电子设备更新 显示所述熄屏图像中位于第一图层的显示要素之前,所述方法还包括:所述电子设备根据所述用户定位信息和第一预设关系,确定与所述用户定位信息对应的前景窗口;其中,所述第一预设关系为所述用户定位信息与具有特定形状或尺寸的前景窗口之间的预设对应关系。
- 根据权利要求1至8中任一项所述的方法,其特征在于,在所述电子设备更新显示所述熄屏图像中位于第二图层的显示要素之前,所述方法还包括:所述电子设备根据所述用户行为信息和第二预设关系,确定与所述用户行为信息对应的场景图案;其中,所述第二预设关系为所述用户行为信息与具有特定内容的场景图案之间的预设对应关系。
- 根据权利要求9所述的方法,其特征在于,所述方法还包括:所述电子设备根据所述电子设备正在运行的应用程序,确定所述用户作用于所述电子设备的行为信息,作为所述用户行为信息。
- 根据权利要求10所述的方法,其特征在于,所述电子设备根据所述电子设备正在运行的应用程序,确定所述用户作用于所述电子设备的行为信息,包括:所述电子设备根据所述电子设备正在运行的应用程序,获取用户运动数据;当所述电子设备判断出所述用户运动数据满足预设运动条件时,所述电子设备确定所述用户行为信息包括运动状态;其中,所述用户运动数据包括用户的心率值和/或在预设时长内的步数。
- 根据权利要求1至11中任一项所述的方法,其特征在于,在所述电子设备更新显示所述熄屏图像中位于第三图层的显示要素之前,所述方法还包括:所述电子设备根据所述时间气象信息和第三预设关系,确定与所述时间气象信息对应的背景图案;其中,所述第三预设关系为所述时间气象信息与具有特定图案、颜色和/或亮度的背景图案之间的预设对应关系。
- 根据权利要求1至12中任一项所述的方法,其特征在于,所述电子设备显示熄屏图像,包括:所述电子设备按照第一熄屏显示方式显示所述熄屏图像;其中,所述第一熄屏显示方式包括以下任一项:轻触显示方式、定时显示方式或者全天显示方式。
- 根据权利要求13所述的方法,其特征在于,所述方法还包括:响应于用户的第三操作,所述电子设备将熄屏显示方式设置为所述第一熄屏显示方式。
- 根据权利要求1至14中任一项所述的方法,其特征在于,在当电子设备处于熄屏状态时,所述电子设备显示熄屏图像之前,所述方法还包括:响应于用户的第四操作,所述电子设备开启熄屏显示功能。
- 根据权利要求1至15中任一项所述的方法,其特征在于,所述方法还包括:响应于用户的第五操作,所述电子设备显示熄屏显示功能的设置界面,所述设置 界面包括预设图库;响应于用户从所述预设图库中选择图像的第六操作,所述电子设备将所选择的图像作为所述熄屏图像中位于目标图层的显示要素;其中,所述预设图库包括所述电子设备本地存储的图像和/或网络服务器中存储的图像。
- 一种具有显示屏的电子设备,其特征在于,所述电子设备通过硬件或通过硬件执行相应的软件实现如权利要求1至16中任一项所述的方法,所述硬件或所述软件包括一个或多个与权利要求1至16任一项所述的方法相对应的模块。
- 一种芯片,其特征在于,所述芯片与存储器耦合,所述芯片用于读取并执行所述存储器中存储的计算机程序,以实现如权利要求1至16中任一项所述的方法。
- 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质存储有计算机程序,当所述计算机程序在电子设备上运行时,使得所述电子设备执行如权利要求1至16中任一项所述的方法。
- 一种计算机程序产品,其特征在于,当所述计算机程序产品在计算机上运行时,使得所述计算机执行如权利要求1至16中任一项所述的方法。
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| CN118363692A (zh) * | 2023-01-19 | 2024-07-19 | 华为技术有限公司 | 基于天气信息的显示方法、电子设备和可读存储介质 |
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| US12542847B2 (en) | 2026-02-03 |
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