WO2019114688A1 - 用于控制设置于车辆上的灯的方法和用于车辆的照明系统 - Google Patents
用于控制设置于车辆上的灯的方法和用于车辆的照明系统 Download PDFInfo
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- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B45/00—Circuit arrangements for operating light-emitting diodes [LED]
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60Q—ARRANGEMENT OF SIGNALLING OR LIGHTING DEVICES, THE MOUNTING OR SUPPORTING THEREOF OR CIRCUITS THEREFOR, FOR VEHICLES IN GENERAL
- B60Q3/00—Arrangement of lighting devices for vehicle interiors; Lighting devices specially adapted for vehicle interiors
- B60Q3/80—Circuits; Control arrangements
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- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B45/00—Circuit arrangements for operating light-emitting diodes [LED]
- H05B45/10—Controlling the intensity of the light
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B45/00—Circuit arrangements for operating light-emitting diodes [LED]
- H05B45/20—Controlling the colour of the light
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B47/00—Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
- H05B47/10—Controlling the light source
- H05B47/105—Controlling the light source in response to determined parameters
Definitions
- the present invention relates to automotive electronics, and more particularly to a method for controlling a light disposed on a vehicle and an illumination system for the vehicle implementing the method.
- the lights in the car can reflect other functions, which meets the needs of users and is also desired by the industry.
- a method for controlling a light provided on a vehicle comprises the following steps:
- the operating state of the lamp is controlled based on the control signal.
- the lamp is a lamp capable of emitting three primary colors of light. More preferably, the lamp is an LED lamp.
- the lamp is a lamp group consisting of more than one lamp.
- the environmental mode comprises at least one of the following: a monochrome mode, a breathing mode, a streamer mode, and a rhythm mode.
- the configuration parameter of the monochrome mode includes the color and brightness of the lamp.
- the configuration parameters of the breathing mode include a color of the lamp, a level of brightness change, and a frequency of brightness change.
- the configuration parameters of the streamer mode include a color sequence of the lamp, a brightness of each color, and a frequency of color switching.
- the configuration parameter of the rhythm mode includes at least one of the following: a color of the lamp, a frequency of change of color, a frequency of change of brightness and brightness.
- the color of the lamp is determined by the pitch of the music played by the vehicle sound system, and/or the brightness is determined by the loudness of the music played by the vehicle sound system, and/or the change frequency and brightness of the color.
- the frequency is determined by the rhythm of the music played by the vehicle sound system.
- the lamp is disposed in the vehicle.
- a lighting system for a vehicle includes:
- a driving circuit coupled to the lamp, configured to generate a driving signal for the lamp based on a control signal from the outside,
- control signal is generated by a configuration parameter regarding an environmental mode of the lamp.
- FIG. 1 is a schematic block diagram of a vehicle interior lighting system in accordance with one embodiment of the present invention.
- FIG. 2 is a flow chart of a method for controlling a light disposed on a vehicle in accordance with another embodiment of the present invention.
- Coupled should be understood to include the case of direct transfer of electrical energy or electrical signals between two units, or the indirect transfer of electrical or electrical signals via one or more third units.
- Set on the vehicle should be understood broadly to mean various positions that can be placed on the vehicle, including for example but not limited to the interior of the vehicle and the exterior of the vehicle.
- the lamp disposed in the vehicle will be described as an example, but is disposed outside the vehicle, such as the wheel eyebrow lamp disposed on the hub as claimed in other patent applications.
- the control methods and systems described herein can also be employed.
- an LED lamp more specifically, an RGB LED lamp will be described as an example, but all lamps capable of emitting three primary colors of light can be used in the present invention.
- a method for controlling a lamp disposed in a vehicle includes receiving configuration parameters relating to an environmental mode of the lamp, generating a control signal from the configuration parameter, and controlling an operating state of the lamp based on the control signal .
- the environmental mode may be a monochrome mode, a breathing mode, a streamer mode, and a rhythm mode.
- FIG. 1 is a schematic block diagram of a vehicle interior lighting system in accordance with one embodiment of the present invention.
- the vehicle interior lighting system 10 includes a light 110 disposed within the interior of the vehicle and a drive circuit 120 coupled to the light 110.
- the vehicle interior lighting system 10 may also include a processing unit that generates control signals for the drive circuit 120.
- the processing unit may also be considered as part of other in-vehicle devices, such as in-vehicle entertainment systems, not as part of the vehicle interior lighting system.
- the following description is exemplified by the integration of the processing unit 210 in the in-vehicle infotainment system or the in-vehicle central control system 20.
- an RGB LED lamp (for example, made in the form of a flexible high-brightness optical astigmatism fiber) is described as an example of the lamp 10 provided in the vehicle.
- the drive circuit 120 is configured to be coupled to the in-vehicle infotainment system or the in-vehicle central control system 20 via a CAN bus to receive a control signal generated by the in-vehicle infotainment system or the in-vehicle central control system 20, and to generate a drive for the lamp 110 based on the control signal. signal.
- the driving circuit 120 can also communicate with the in-vehicle infotainment system or the in-vehicle central control system 20 by other means, such as a LIN bus or a wireless communication method, as long as it can be implemented in the vehicle and can be driven without departing from the spirit of the present invention.
- the information transmission between the circuit 120 and the in-vehicle infotainment system or the in-vehicle central control system 20 is sufficient.
- the control signal is generated by configuration parameters regarding the environmental mode of the lamp.
- the user can select configuration parameters via the APP on the smartphone and send them to the processing unit 210 of the in-vehicle entertainment system or the in-vehicle central control system 20, or can directly select the configuration on the in-vehicle entertainment system or the human-machine interface 220 of the in-vehicle central control system 20. parameter.
- the environmental mode may include at least one of the following: a monochrome mode, a breathing mode, a streamer mode, and a rhythm mode.
- a monochrome mode For each environment mode, it has its own configuration parameters.
- Other environmental modes that are not listed here but that can be implemented by configuring the parameters of the lamp should also be covered by the invention.
- the configuration parameters of the monochrome mode include, for example, the color and brightness of the lamp.
- the user can select a desired color and brightness on the smartphone APP interface or the man-machine interface of the in-vehicle entertainment system or the in-vehicle central control system 20, and then the processing unit 210 can determine the corresponding RGB value according to the selected color and brightness and thereby Determine the operating current of the lamp.
- the determined operating current is included in the control command and sent to the drive circuit 120, which generates a corresponding drive signal based on the control signal and outputs it to the lamp 110 to provide the illumination effect desired by the user.
- the configuration parameters of the breathing mode include, for example, the color of the lamp, the level of change in brightness, and the frequency of change in brightness, and the like.
- the user can select a configuration parameter such as a desired color, a level and a frequency of the brightness change on the smartphone APP interface or the man-machine interface of the in-vehicle entertainment system or the in-vehicle central control system 20, and the processing unit can determine the selected configuration parameter according to the selected configuration parameter.
- Lamp operating current and signal timing are included in the control command and sent to the driver circuit 120, which generates a corresponding drive signal based on the control signal and outputs to the lamp 110 to provide the desired illumination effect.
- the configuration parameters of the streamer mode include, for example, a color sequence of the lamp (i.e., a sequence of color changes), a brightness of each color, and a frequency of color switching, and the like.
- the user can select configuration parameters such as a desired color sequence, brightness of each color, and frequency of color switching on the smartphone APP interface or the man-machine interface of the in-vehicle entertainment system or the in-vehicle central control system 20, and then the processing unit can be selected according to the selection.
- the configuration parameters determine the operating current and signal timing of the lamp. The determined operating current and signal timing are included in the control command and sent to the driver circuit 120, which generates a corresponding drive signal based on the control signal and outputs it to the lamp 110 to provide the illumination effect desired by the user.
- the configuration parameters of the rhythm pattern include, for example, at least one of the following: the color of the lamp, the frequency of change of the color, the frequency of change of the brightness and the brightness.
- the color is determined by the pitch of the music played by the vehicle sound system
- the brightness is determined by the loudness of the music played by the vehicle sound system
- the frequency of change of the color and the frequency of change of the brightness are the rhythm of the music played by the vehicle sound system. determine. It should be understood that the color can also be determined by other factors, such as the type of music being played, and similarly, the brightness, the frequency of change of color, and the frequency of change of brightness can also be determined by other factors.
- the lamps can be made to exhibit different atmospheres according to the environmental mode, and in the monochrome mode, the lighting effects of the lamps are matched with the user's expectations based on the color and brightness selected by the user, thereby creating The atmosphere that the user wants.
- the lighting in the breathing mode, the streamer mode, and the rhythm mode, the lighting can be made to create an atmosphere desired by the user based on different parameters selected by the user.
- the lamp in this example may be a group of more than one lamp, for example in the case of an RGB LED lamp, which may be an LED strip that is formed, for example, as part of the interior.
- FIG. 2 is a flow chart of a method for controlling a light disposed inside a vehicle in accordance with another embodiment of the present invention.
- the present embodiment is implemented by means of the interior lighting system described above with reference to FIG.
- the method illustrated in Figure 2 is not limited to a particular device.
- a processing unit (which may, for example, be part of a vehicle interior lighting system or integrated within other onboard devices) receives configuration parameters regarding the environmental mode of the lamp.
- the environmental mode may include, for example, a monochrome mode, a breathing mode, a streamer mode, and a rhythm mode, and configuration parameters of each mode are as described above, and are not described herein again.
- the configuration parameters of the monochrome mode, the breathing mode, and the streamer mode may be selected by the user on the smartphone APP interface or the vehicle entertainment system or the man-machine interface of the vehicle central control system 20, and the configuration parameters of the rhythm mode are based on The music played by the vehicle sound system is determined.
- the processing unit generates a control signal from the configuration parameters.
- the control signal can include, for example, the operating current and signal timing of the lamp.
- the driving circuit controls the operating state of the lamp 110 based on the control signal to achieve the desired lighting effect of the user.
- the lamp disposed in the vehicle can present different lighting effects according to the user's selection, and the vehicle can be constructed.
- the internal atmosphere, improved driving experience and improved car grades are unmatched by the current working mode of the interior lights used only as lights.
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- Engineering & Computer Science (AREA)
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Abstract
本发明涉及汽车电子技术,特别涉及用于控制设置在车辆内部的灯的方法和实施该方法的车辆内部照明系统。按照本发明的方法包括下列步骤:接收关于灯的环境模式的配置参数;由所述配置参数生成控制信号;以及基于所述控制信号控制灯的工作状态。
Description
本发明涉及汽车电子技术,特别涉及用于控制设置在车辆上的灯的方法和实施该方法的用于车辆的照明系统。
随着汽车行业的不断发展,人们对车的需求不再仅仅局限于出行代步,对许多辅助性功能或娱乐元素的要求也日益提高。这其中就包括设置于车辆的灯,它既是功能件,也是外观件,正成为汽车造型至关重要的一部分。
近年来,让车内的灯在光照功能之外,还能体现出其他更多地功能,是符合用户需求,也是业界所希望的。
发明内容
本发明的一个目的是提供一种的用于控制设置在车辆上的灯的方法和装置,其能够提供丰富的氛围效果并且用户可灵活、方便地选择所需的效果。
按照本发明一个方面的用于控制设置于车辆上的灯的方法包含下列步骤:
接收关于该灯的环境模式的配置参数;
由所述配置参数生成控制信号;以及
基于所述控制信号控制该灯的工作状态。
优选地,在上述方法中,所述灯为能发出三基色光线的灯。更好地,所述灯为LED灯。
优选地,在上述方法中,所述灯是由一个以上的灯组成的灯组。
优选地,在上述方法中,所述环境模式包括下列中的至少一种:单色模式、呼吸模式、流光模式和律动模式。
优选地,在上述方法中,所述单色模式的配置参数包括所述灯的颜色和亮度。
优选地,在上述方法中,所述呼吸模式的配置参数包括所述灯的颜色、亮度变化的等级和亮度变化的频率。
优选地,在上述方法中,所述流光模式的配置参数包括所述灯的颜色序列、每种颜色的亮度和颜色切换的频率。
优选地,在上述方法中,所述律动模式的配置参数包括下列中的至少一项:所述灯的颜色、颜色的变化频率、亮度和亮度的变化频率。
优选地,在上述方法中,所述灯的颜色由车辆音响系统播放的音乐的音调确定,和/或亮度由车辆音响系统播放的音乐的响度确定,和/或颜色的变化频率和亮度的变化频率由车辆音响系统播放的音乐的节奏确定。
优选地,在上述方法中,所述灯设置在车内。
按照本发明还有一个方面的用于车辆的照明系统,包括:
设置于车辆上的灯;
与所述灯耦合的驱动电路,其配置为基于来自外部的控制信号生成用于所述灯的驱动信号,
其中,所述控制信号由关于所述灯的环境模式的配置参数生成。
本发明的上述和/或其它方面和优点将通过以下结合附图的各个方面的描述变得更加清晰和更容易理解,附图中相同或相似的单元采用相同的标号表示。附图包括:
图1为按照本发明一个实施例的车辆内部照明系统的示意框图。
图2为按照本发明另一个实施例的用于控制设置在车辆上的灯的方法的流程图。
下面参照其中图示了本发明示意性实施例的附图更为全面地说明本发明。但本发明可以按不同形式来实现,而不应解读为仅限于本文给出的各实施例。给出的上述各实施例旨在使本文的披露全面完整,以将本发明的保护范围更为全面地传达给本领域技术人员。
在本说明书中,诸如“包含”和“包括”之类的用语表示除了具有在说明书和权利要求书中有直接和明确表述的单元和步骤以外,本发明的技术方案也不排除具有未被直接或明确表述的其它单元和步骤的情形。
诸如“第一”和“第二”之类的用语并不表示单元在时间、空间、大小等方面的顺序而仅仅是作区分各单元之用。
“耦合”应当理解为包括在两个单元之间直接传送电能量或电信号的情形,或者经过一个或多个第三单元间接传送电能量或电信号的情形。
“设置在车辆上”应该广义理解为可以设置在车辆上的各个位置,例如包括但不限于车辆内部和车辆外部。
在本发明以下描述的实施例中,将会以设置在车辆内的灯作为示例来进行说明,但是设置在车外的,例如申请人在其它专利申请中主张的设置于轮毂上的轮眉灯,同样可以采用在此所描述的控制方法与系统。更进一步作为示例,在此描述的示例中,将以LED灯,更具体而言,将以RGB LED灯作为示例来进行说明,但是,所有能够发出三基色光线的灯都可用作在本发明中所提到的设置于车辆的灯。
根据本发明提供的用于控制设置于车内的灯的方法,包括接收关于该灯的环境模式的配置参数,由所述配置参数生成控制信号,且基于该控制信号来控制该灯的工作状态。其中,环境模式可以是单色模式、呼吸模式、流光模式和律动模式。
图1为按照本发明一个实施例的车辆内部照明系统的示意框图。
如图1所示,车辆内部照明系统10包括设置于车辆内部的灯110和与灯110耦合的驱动电路120。可选地但并非必需的是,车辆内部照明系统10还可以包含生成用于驱动电路120的控制信号的处理单元。此外,该处理单元也可不作为车辆内部照明系统的一部分而视为其它车载装置(例如车载娱乐系统)的组成部分。示例性地,以下的描述以处理单元210集成在车载信息娱乐系统或车载中央控制系统20为例。
如上文所提到的,以RGB LED灯(例如以柔性高亮度散光光导纤维的形式制作)作为设置在车内的灯10的示例来进行说明。驱动电路120配置为经CAN总线与车载信息娱乐系统或车载中央控制系统20耦合以接收由车载信息娱乐系统或车载中央控制系统20生成的控制信号,并且基于该控制信号生成用于灯110的驱动信号。在不背离本发明精神的情况下,驱动电路120也可通过其它方式与车载信息娱乐系统或车载中央控制系统20通信,例如LIN总线或无线通信方式等,只要能够实现在车中且可实现驱动电路120与车载信息娱乐系统或车载中央控制系统20之间的信息传输即可。在本实施例中,控制信号由关于该灯的环境模式的配置参数生成。用户例如可以通过智能手机上的APP选择配置参数并发送给车载娱乐系统或车载中央控制系统20的处理单元210,或者可以直接在车载娱乐系统或车载中央控制系统20的人机界面220上选择配置参数。
在本实施例中,环境模式可包括下列中的至少一种:单色模式、呼吸模 式、流光模式和律动模式。对于每种环境模式,其具有各自的配置参数。其它未在此列出但可通过配置灯的参数而实现的环境模式,同样应被被发明所涵盖。
单色模式的配置参数例如包括该灯的颜色和亮度。用户可以在智能手机APP界面或者车载娱乐系统或车载中央控制系统20的人机界面上选择所希望的颜色和亮度,随后处理单元210可根据选定的颜色和亮度确定相应的RGB值并由此确定该灯的工作电流。所确定的工作电流包含在控制命令中并发送给驱动电路120,后者基于控制信号生成相应的驱动信号并输出至灯110,从而提供用户希望得到的照明效果。
呼吸模式的配置参数例如包括该灯的颜色、亮度变化的等级和亮度变化的频率等。用户可以在智能手机APP界面或者车载娱乐系统或车载中央控制系统20的人机界面上选择所希望的颜色、亮度变化的等级和频率等配置参数,随后处理单元可根据选定的配置参数确定该灯的工作电流和信号时序。所确定的工作电流和信号时序包含在控制命令中并发送给驱动电路120,后者基于控制信号生成相应的驱动信号并输出至该灯110,从而提供用户希望得到的光照效果。
流光模式的配置参数例如包括该灯的颜色序列(即颜色变化的序列)、每种颜色的亮度和颜色切换的频率等。用户可以在智能手机APP界面或者车载娱乐系统或车载中央控制系统20的人机界面上选择所希望的颜色序列、每种颜色的亮度和颜色切换的频率等配置参数,随后处理单元可根据选定的配置参数确定灯的工作电流和信号时序。所确定的工作电流和信号时序包含在控制命令中并发送给驱动电路120,后者基于控制信号生成相应的驱动信号并输出至灯110,从而提供用户希望得到的照明效果。
律动模式的配置参数例如包括下列中的至少一项:灯的颜色、颜色的变化频率、亮度和亮度的变化频率。作为示例,在该模式下,颜色由车辆音响系统播放的音乐的音调确定,亮度由车辆音响系统播放的音乐的响度确定,颜色的变化频率和亮度的变化频率由车辆音响系统播放的音乐的节奏确定。应理解到,颜色也能由其他因素确定,例如播放的音乐的类型灯,类似地,亮度、颜色的变化频率和亮度的变化频率也可以由其他因素确定。
采用根据本发明示例的车辆内部照明系统,可以根据环境模式来使得灯呈现出不同的氛围,在单色模式下,基于用户选择的颜色和亮度而使灯的照明效果符合用户期望,从而营造出用户希望的氛围。类似地,在呼吸模式、 流光模式以及律动模式下,都能基于用户选择的不同参数而使灯光营造出用户期望的氛围。该示例中的灯,可以是一个以上的灯组成的灯组,例如在使用RGB LED灯的情况下,该灯组可以是一个LED灯光带,其例如被作为内饰的一部分形成在车内。
图2为按照本发明另一个实施例的用于控制设置在车辆内部的灯的方法的流程图。示例性地,借助上面参照图1所述的车内照明系统来实施本实施例。但是应该理解的是,图2所示的方法并不局限于特定的装置。
如图2所示,在步骤210,处理单元(其例如可以是车辆内部照明系统的一部分或者集成在其它车载装置内)接收关于该灯的环境模式的配置参数。环境模式例如可以包括单色模式、呼吸模式、流光模式和律动模式,每种模式的配置参数如上所述,此处不再赘述。
在本实施例中,单色模式、呼吸模式和流光模式的配置参数可以由用户在智能手机APP界面或者车载娱乐系统或车载中央控制系统20的人机界面上选择,律动模式的配置参数则根据车辆音响系统播放的音乐确定。
随后进入步骤220,处理单元由配置参数生成控制信号。控制信号例如可包括该灯的工作电流和信号时序。
接着进入步骤230,驱动电路基于控制信号控制灯110的工作状态,以实现用户所希望的光照效果。
采用本发明示例的车辆内部照明系统和/或执行本发明所述的用于控制设置于车辆的灯的方法,可使例如设置在车内的灯根据用户选择而呈现不同的光照效果,营造车内氛围,改善驾驶体验,提升汽车档次,这都是目前的车内灯仅用作灯的单一工作模式所无法比拟的。
提供本文中提出的实施例和示例,以便最好地说明按照本技术及其特定应用的实施例,并且由此使本领域的技术人员能够实施和使用本发明。但是,本领域的技术人员将会知道,仅为了便于说明和举例而提供以上描述和示例。所提出的描述不是意在涵盖本发明的各个方面或者将本发明局限于所公开的精确形式。
鉴于以上所述,本公开的范围通过以下权利要求书来确定。
Claims (21)
- 一种用于控制设置于车辆上的灯的方法,其特征在于,包含下列步骤:接收关于该灯的环境模式的配置参数;由所述配置参数生成控制信号;以及基于所述控制信号控制该灯的工作状态。
- 如权利要求1所述的方法,其中,所述灯为能发出三基色光线的灯。
- 如权利要求2所述的方法,其中,所述灯为LED灯。
- 如权利要求1或2所述的方法,其中,所述灯是由一个以上的灯组成的灯组。
- 如权利要求1或2所述的方法,其中,所述环境模式包括下列中的至少一种:单色模式、呼吸模式、流光模式和律动模式。
- 如权利要求1或2所述的方法,其中,所述单色模式的配置参数包括所述灯的颜色和亮度。
- 如权利要求1或2所述的方法,其中,所述呼吸模式的配置参数包括所述灯的颜色、亮度变化的等级和亮度变化的频率。
- 如权利要求1或2所述的方法,其中,所述流光模式的配置参数包括所述灯的颜色序列、每种颜色的亮度和颜色切换的频率。
- 如权利要求1或2所述的方法,其中,所述律动模式的配置参数包括下列中的至少一项:所述灯的颜色、颜色的变化频率、亮度和亮度的变化频率。
- 如权利8所述的方法,其中,所述灯的颜色由车辆音响系统播放的音乐的音调确定,和/或亮度由车辆音响系统播放的音乐的响度确定,和/或颜色的变化频率和亮度的变化频率由车辆音响系统播放的音乐的节奏确定。
- 如权利要求1或2所述的方法,其中,所述灯设置在车内。
- 一种用于车辆的照明系统,其特征在于,包括:设置于车辆上的灯;与所述灯耦合的驱动电路,其配置为基于来自外部的控制信号生成用于所述灯的驱动信号,其中,所述控制信号由关于所述灯的环境模式的配置参数生成。
- 如权利要求12所述的照明系统,其中,所述灯为能发出三基色光线 的灯。
- 如权利要求13所述的照明系统,其中,所述灯为LED灯。
- 如权利要求12所述的照明系统,其中,所述驱动电路接收由所述车载信息娱乐系统生成的所述控制信号。
- 如权利要求12所述的照明系统,其中,所述环境模式包括下列中的至少一种:单色模式、呼吸模式、流光模式和律动模式。
- 如权利要求16所述的照明系统,其中,所述单色模式的配置参数包括灯的颜色和亮度。
- 如权利要求16所述的系统,其中,所述呼吸模式的配置参数包括灯的颜色、亮度变化的等级和亮度变化的频率。
- 如权利要求16所述的照明系统,其中,所述流光模式的配置参数包括灯的颜色序列、每种颜色的亮度和颜色切换的频率。
- 如权利要求16所述的系统,其中,所述律动模式的配置参数包括下列中的至少一项:灯的颜色、颜色的变化频率、亮度和亮度的变化频率,其中,颜色由车辆音响系统播放的音乐的音调确定,亮度由车辆音响系统播放的音乐的响度确定,颜色的变化频率和亮度的变化频率由车辆音响系统播放的音乐的节奏确定。
- 如权利要求12或13所述的系统,其中,所述灯设置在车内。
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