WO2022105679A1 - 一种车辆检测方法、装置及设备 - Google Patents
一种车辆检测方法、装置及设备 Download PDFInfo
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- WO2022105679A1 WO2022105679A1 PCT/CN2021/130233 CN2021130233W WO2022105679A1 WO 2022105679 A1 WO2022105679 A1 WO 2022105679A1 CN 2021130233 W CN2021130233 W CN 2021130233W WO 2022105679 A1 WO2022105679 A1 WO 2022105679A1
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- measurement
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R31/00—Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
- G01R31/005—Testing of electric installations on transport means
- G01R31/006—Testing of electric installations on transport means on road vehicles, e.g. automobiles or trucks
- G01R31/007—Testing of electric installations on transport means on road vehicles, e.g. automobiles or trucks using microprocessors or computers
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01M—TESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
- G01M17/00—Testing of vehicles
- G01M17/007—Wheeled or endless-tracked vehicles
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- G—PHYSICS
- G07—CHECKING-DEVICES
- G07C—TIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
- G07C5/00—Registering or indicating the working of vehicles
- G07C5/008—Registering or indicating the working of vehicles communicating information to a remotely located station
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- G—PHYSICS
- G07—CHECKING-DEVICES
- G07C—TIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
- G07C5/00—Registering or indicating the working of vehicles
- G07C5/08—Registering or indicating performance data other than driving, working, idle, or waiting time, with or without registering driving, working, idle or waiting time
- G07C5/0808—Diagnosing performance data
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- G—PHYSICS
- G07—CHECKING-DEVICES
- G07C—TIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
- G07C5/00—Registering or indicating the working of vehicles
- G07C5/08—Registering or indicating performance data other than driving, working, idle, or waiting time, with or without registering driving, working, idle or waiting time
- G07C5/0816—Indicating performance data, e.g. occurrence of a malfunction
Definitions
- the present application relates to the technical field of vehicle component detection, and in particular, to a vehicle detection method, device, and device.
- An oscilloscope is a measurement device used to detect vehicle electronic circuit failures, which can measure signal characteristics such as amplitude, frequency, phase, and spectrum.
- the use of an oscilloscope requires various leads to connect the oscilloscope to the component under test.
- the inventor found that the existing oscilloscope requires the user to connect the oscilloscope and the component to be tested based on experience, which makes the use of the oscilloscope to detect and maintain vehicles high in learning cost and time-consuming and labor-intensive in measurement.
- embodiments of the present invention provide a vehicle detection method, device, and device, which are used to solve the problems in the prior art that using an oscilloscope to detect and maintain vehicles requires high learning cost and time-consuming and laborious measurement.
- a vehicle detection method applied to a vehicle detection system, the system includes an oscilloscope; the method includes:
- the selected measurement item is measured, and the signal waveform corresponding to the measurement item is displayed.
- the measurement guideline information includes lead wire connection guideline.
- the measurement guidance information further includes at least one of the following: measurement purpose, measurement precautions, measurement description and measurement guidance diagram.
- measuring the selected measurement item when receiving a measurement start instruction from the user, measuring the selected measurement item, and displaying the signal waveform corresponding to the measurement item includes:
- the displaying the signal waveform corresponding to the measurement item includes:
- Acquire preset measurement result information corresponding to the parameter configuration data and display the preset measurement result information, so that the user can compare the signal waveform with the preset measurement result information to determine the measurement result.
- the vehicle detection system includes a server; after displaying the signal waveform corresponding to the measurement item, the method includes:
- the server sends the signal waveform to the server, so that the server compares the signal waveform with preset measurement result information to determine a measurement result;
- the preset measurement result information is corresponding to the parameter configuration data Preset measurement result information;
- the measurement result sent by the server is received.
- the displaying the signal waveform corresponding to the measurement item includes:
- Acquire preset measurement result information corresponding to the parameter configuration data compare the signal waveform with the preset measurement result information to determine a measurement result.
- the method includes:
- the acquiring and displaying the measurement guidance information corresponding to the selected measurement item includes:
- the user-defined measurement guide information corresponding to the selected measurement item is acquired and displayed from the vehicle information database according to the user identification.
- the method includes:
- the user edits the parameter configuration data of the selected measurement item to generate customized parameter configuration data, and calls the oscilloscope to load the customized parameter configuration data to measure the selected measurement item to generate customized preset measurement result information
- the self-defined parameter configuration data and the self-defined preset measurement result information are saved to the vehicle information database;
- the acquiring parameter configuration data of the selected measurement item includes:
- the preset measurement result information includes the user-defined preset measurement result information corresponding to the identifier of the user.
- a vehicle detection device applied to a vehicle detection system, the system includes an oscilloscope; the device includes:
- the first acquisition module is used to acquire the vehicle information to be tested
- a second acquisition module configured to acquire and display measurement items associated with the vehicle information to be tested
- a receiving module configured to receive a user's selection operation on the measurement item to obtain the selected measurement item
- a third acquiring module configured to acquire and display measurement guide information corresponding to the selected measurement item, so as to prompt the user to connect the vehicle detection system to the measurement item according to the measurement guide information;
- the display module is configured to measure the selected measurement item and display the signal waveform corresponding to the measurement item when the user's measurement start instruction is received.
- a vehicle detection device including: a processor, a memory, a communication interface, and a communication bus, the processor, the memory, and the communication interface are completed through the communication bus communication with each other;
- the memory is used to store at least one executable instruction, and the executable instruction enables the processor to perform the operations of the vehicle detection method described above.
- the measurement guide information of the selected measurement item is obtained, so as to prompt the user according to the measurement guide information Connect a vehicle detection system including an oscilloscope to this measurement item, then measure the selected measurement item, and display the signal waveform corresponding to the measurement item.
- FIG. 1 shows a schematic structural diagram of a vehicle detection system provided by an embodiment of the present invention
- FIG. 2 shows a schematic flowchart of a vehicle detection method provided by an embodiment of the present invention
- FIG. 3 shows an example diagram of an interface for selecting a vehicle to be tested provided by an embodiment of the present invention
- FIG. 4 shows an example diagram of a measurement item selection and related measurement guidance information display interface provided by an embodiment of the present invention
- FIG. 5 shows a schematic diagram of a connection and a schematic diagram of the position of a component under test provided by an embodiment of the present invention
- FIG. 6 shows an example diagram of a socket diagram provided by an embodiment of the present invention
- FIG. 7 shows an example diagram of an oscilloscope measurement interface provided by an embodiment of the present invention.
- FIG. 8 shows a schematic flowchart of another vehicle detection method provided by an embodiment of the present invention.
- FIG. 9 shows an example diagram of a measurement guide information editing interface for a measurement item provided by an embodiment of the present invention.
- FIG. 10 shows a schematic structural diagram of a vehicle detection device provided by an embodiment of the present invention.
- FIG. 11 shows a schematic structural diagram of a vehicle detection device provided by an embodiment of the present invention.
- FIG. 1 shows a schematic structural diagram of a vehicle detection system provided by an embodiment of the present invention.
- the vehicle detection system includes a user terminal and an oscilloscope, wherein the user terminal includes terminal equipment such as a mobile phone, a tablet computer or a personal computer.
- a vehicle detection platform application program can be installed in the user terminal, so that the user can choose to call various hardware devices to detect the vehicle components to be tested.
- the oscilloscope may be a vehicle diagnostic instrument with an oscilloscope function or a vehicle communication measurement interface (Vehicle Communication Measure Interface, VCMI) device.
- VCMI Vehicle Communication Measure Interface
- the vehicle detection system may further include a server, which, as a cloud data sharing processing center, can centrally store the vehicle information database of the vehicle detection platform, which can be used to provide user terminals with data related to the vehicle detection platform, and can also store user data. Customize various vehicle detection related data.
- the user terminal may be connected to the oscilloscope and the server in a wired or wireless manner, respectively.
- the oscilloscope is connected to the component under test of the vehicle.
- the measured components of the vehicle to be tested are simply referred to as measurement items.
- the oscilloscope may have four channels, A, B, C, and D, to be connected to the measurement items for measurement.
- the oscilloscope may use other interface methods to connect with the measurement items of the vehicle, which is not limited here. .
- FIG. 2 shows a schematic flowchart of a vehicle detection method provided by an embodiment of the present invention, which is applied to the above-mentioned vehicle detection system.
- the method may be performed by the above-mentioned user terminal. As shown in Figure 2, the method includes the following steps:
- Step 210 Obtain the vehicle information to be tested.
- step 210 includes:
- Step 211 When the user uses the vehicle detection system to detect the vehicle to be tested, select and determine the information of the vehicle to be tested through the vehicle detection platform on the user terminal.
- FIG. 3 shows an example diagram of an interface for selecting a vehicle to be tested provided by an embodiment of the present invention.
- the interface may be a specific interface in the vehicle detection platform.
- the user terminal can obtain information such as the brand, model, and year of each vehicle from a local vehicle information database, and display it to the user on the interface.
- the vehicle detection system may include a server, and the user terminal may download the above-mentioned information from the vehicle information database of the server, and display the information in the selection interface of the vehicle to be tested. Under this interface, users can select information such as the brand, model and year of the vehicle to determine accurate vehicle information to be tested.
- each vehicle information to be tested may correspond to a vehicle information ID (Identification, identification).
- the user has a corresponding user ID on the vehicle inspection platform.
- the information of the vehicle to be tested displayed by the user terminal to the user when the vehicle to be tested is selected includes the customized information of the vehicle to be tested corresponding to the user ID.
- Step 212 The user terminal acquires the vehicle information to be tested according to the user's selection.
- the user terminal obtains the vehicle information ID corresponding to the information of the vehicle to be tested by selecting the determined information of the vehicle to be tested (including the customized information of the vehicle to be tested) by the user on the vehicle detection platform.
- Step 220 Acquire and display measurement items associated with the vehicle information to be tested.
- the user terminal queries and obtains all measurement items associated with the vehicle information ID from the vehicle information database through the vehicle information ID corresponding to the vehicle information to be measured.
- the database may be a local vehicle information database of the user terminal, or may be a vehicle information database in a server.
- the vehicle information database in the embodiments of the present invention includes a vehicle information database local to the user terminal and a vehicle information database in a server. In the vehicle information database, each measurement item may correspond to a measurement item ID.
- FIG. 4 shows an example diagram of a measurement item selection and related measurement guide information display interface provided by an embodiment of the present invention.
- the interface may be a specific interface in the vehicle detection platform. Specifically, after acquiring all the measurement items associated with the vehicle information to be tested, the user terminal may display the name information of each measurement item in the interface for the user to select.
- the measurement item displayed by the user terminal to the user when the measurement item is selected includes the measurement item.
- Custom measurement items are a user-defined measurement item corresponding to the user ID and associated with the vehicle information ID in the vehicle information database.
- Step 230 Receive a user's selection operation on the measurement item to obtain the selected measurement item.
- the user selects a measurement item related to the vehicle to be tested in the above-mentioned measurement item selection and related measurement guidance information display interface, such as the boost pressure sensor in FIG. 4 .
- the user terminal After the user selects the measurement item (including the user-defined measurement item), the user terminal receives the user's selection operation on the measurement item, and obtains the selected measurement item.
- the selected measurement item corresponds to a measurement item ID, and is associated with the above-mentioned vehicle information ID.
- Step 240 Acquire and display measurement guide information corresponding to the selected measurement item, so as to prompt the user to connect the vehicle detection system to the measurement item according to the measurement guide information.
- step 240 further includes:
- Step 241 The user terminal queries and obtains the measurement guide information corresponding to the measurement item from the vehicle information database according to the measurement item ID corresponding to the selected measurement item and the associated vehicle information ID.
- the measurement guideline information includes lead wire connection guideline.
- the lead connection guide may specifically include a list of wiring accessories and information on wiring steps.
- the wiring accessories list is used to explain to the user the accessories required to connect the oscilloscope and the measurement item.
- the wiring accessories list can be: oscilloscope test lead SA005, backstab probe SA051 and big dolphin clip SA060.
- the wiring procedure information is used to explain to the user how to use wiring accessories to connect the oscilloscope to the measurement item.
- the wiring step information can be: "1. Find the position of the booster pressure sensor; 2. Connect the oscilloscope test lead SA005 to the A channel of the oscilloscope; 3.
- the above-mentioned measurement guidance information further includes at least one of the following information: measurement purpose, measurement precautions, measurement description and measurement guidance diagram.
- the measurement purpose (or test purpose) is used to explain to the user the target of the measurement for this measurement item.
- the measurement purpose can be: "This test is to measure the boost pressure sensor through Signal voltage after turbocharging”.
- the measurement precautions are used to explain to the user the dangerous matters that should be paid special attention during the measurement process, for example, under the measurement item "Booster pressure sensor", the measurement precautions can be: "This test involves the measurement of potentially dangerous voltages. Please follow the vehicle manufacturer's full instructions and working specifications, and make sure that any accessories used do not actually exceed the rated voltage”.
- the measurement description is used to show the user the operation principle of the measurement item and some attention details during measurement.
- the measurement description can include: "The fuel level sensor is controlled by the JBE/REM control unit. Power is supplied via an intermittent voltage signal. In order to test the control unit, an oscilloscope measurement is made on the wiring harness side. The left fuel level sensor remains unplugged".
- the measurement guide diagram may include at least one of the following diagrams: a connection diagram, a position diagram of the component under test, a socket diagram, a circuit diagram, and the like.
- FIG. 5 shows a schematic diagram of a connection and a schematic diagram of the position of a component under test provided by an embodiment of the present invention.
- FIG. 6 shows an example diagram of a socket diagram provided by an embodiment of the present invention.
- the socket in the figure is a three-pin socket with 3 pins.
- the above measurement guide information further includes: test step information.
- the test step information is used to explain the overall steps for measuring the measurement item to the user.
- the test step information can be: “1. Please pay special attention to the purpose and precautions of this test; 2. Find the position of the boost pressure sensor, and connect the A channel of the oscilloscope to the sensor; 3. , Configure the measurement parameters of the oscilloscope, or use the measurement parameter configuration preset by the system, and set the boost pressure sensor and oscilloscope according to the measurement instructions; 4. After starting the measurement, do not change the configuration of the sensor and oscilloscope at will; 5. The measurement is over Afterwards, please compare the measured signal waveform with the reference waveform, and confirm whether the measured signal is consistent with the signal characteristic information, so as to judge whether the boost pressure sensor signal is normal.”
- the user can edit the measurement guide information of the selected measurement item to generate a customized measurement associated with the user ID.
- Guidance information if there is no measurement guide information corresponding to the selected measurement item in the vehicle information database, the user can edit the measurement guide information of the selected measurement item to generate a customized measurement associated with the user ID.
- the acquiring and displaying the measurement guidance information corresponding to the selected measurement item includes:
- the user-defined measurement guide information corresponding to the selected measurement item is acquired and displayed from the vehicle information database according to the user identification.
- the user terminal queries and obtains user-defined measurement guidance information corresponding to the measurement item from the vehicle information database according to the measurement item ID corresponding to the selected measurement item, the associated vehicle information ID and the user ID.
- the vehicle information database contains both the measurement guide information preset by the vehicle detection platform and the user-defined measurement guide information, the user-defined measurement guide information is preferentially obtained, or the user is prompted to make a selection. .
- Step 242 The user terminal displays measurement guide information corresponding to the selected measurement item, so as to prompt the user to connect the vehicle detection system including an oscilloscope to the measurement item according to the measurement guide information.
- the user terminal After acquiring the measurement guidance information corresponding to the selected measurement item, the user terminal displays the above measurement guidance information on the vehicle detection platform, so that the user can connect the vehicle detection system including the oscilloscope according to the lead connection guidance in the measurement guidance information. to the measurement item.
- the above measurement guidance information can be displayed in one interface at one time. Since the measurement guidance information may contain many contents, in order to facilitate the user to read and understand various measurement guidance information, preferably, a guided step-by-step display mode may be adopted.
- the user terminal shows the user the measurement purpose and measurement precautions, as shown in Figure 4 on the right side of the interface; in the second step, the user is shown the lead connection guide and measurement guide, as shown in the interface shown in Figure 4. The right part; the third step shows the test step information to the user, etc.
- the guided display mode is just an example, and various measurement guidance information can be flexibly combined step by step and displayed to the user in the interface according to the actual situation, which is not limited here.
- Step 250 When receiving the user's measurement start instruction, measure the selected measurement item, and display the signal waveform corresponding to the measurement item.
- this step may include:
- the user terminal when the user terminal receives the user's preset measurement start instruction, it obtains the parameter configuration data corresponding to the measurement item from the vehicle information database according to the measurement item ID corresponding to the selected measurement item and the associated vehicle information ID.
- the parameter configuration data can be the oscilloscope measurement parameter configuration file preset by the vehicle inspection platform.
- the user terminal sends the parameter configuration data to the oscilloscope, calls the oscilloscope to load the parameter configuration data to measure the measurement item, the oscilloscope acquires the measurement signal of the measurement item and outputs the signal waveform corresponding to the measurement signal, and the user terminal receives the signal sent by the oscilloscope After the waveform is displayed, the signal waveform is displayed.
- FIG. 7 shows an example diagram of an oscilloscope measurement interface provided by an embodiment of the present invention. The figure shows the user the output signal waveform after the oscilloscope measurement.
- the user can load and quickly start the measurement with one key, which can further reduce the difficulty and threshold of the vehicle detection system including the oscilloscope, simplify the user operation, improve the vehicle detection efficiency, and enhance the user experience.
- the preset measurement result information corresponding to the above-mentioned parameter configuration data may be acquired and displayed to the user.
- the signal waveform corresponding to the measurement item it may include:
- Step 260 Acquire preset measurement result information corresponding to the parameter configuration data; display the preset measurement result information, so that the user can compare the signal waveform with the preset measurement result information, and determine measurement results.
- the user terminal may acquire preset measurement result information corresponding to the parameter configuration data.
- the preset measurement result information includes a reference waveform, and the reference waveform is a normal signal waveform generated after the oscilloscope loads the parameter configuration data to measure the measurement item.
- the preset measurement result information may further include preset measurement signal characteristic information, where the measurement signal characteristic information is used to describe the value of signal characteristic data such as the period and amplitude of the measurement item signal.
- the user terminal After acquiring the above preset measurement result information, the user terminal displays the information to the user. If the user terminal obtains the above measurement description before, the measurement description information may also be displayed to assist the user in the measurement. As shown in Figure 7, for the measurement item "Fuel Level Sensor", the reference waveform is displayed on the lower right side, and the above measurement description and measurement signal characteristic information are shown in the lower middle, where the preset measurement signal characteristic information can be: "1.
- the cycle duration of the signal is: 210ms, 2.
- the amplitude the vehicle network voltage is about 12V, 3.
- the amplitude duration about 3.5ms".
- the user terminal displays the preset measurement result information to the user, so that the user compares the signal waveform with the preset measurement result information to determine the measurement result. For example, the user can compare the signal waveform output by the measuring oscilloscope with the reference waveform to judge whether the signal waveform is normal. If the preset measurement result information also includes preset measurement signal feature information, the user can compare the current measurement signal feature information with the preset measurement signal feature information to determine whether they are consistent. If the signal waveform is normal (optionally, the characteristic information of the measurement signal is also consistent), it can be determined that the measurement item is running normally; otherwise, the measurement item is not running normally.
- the user terminal may display various measurement guidance information obtained before, so as to prompt the user to further check whether the measurement operation is correct. Such as whether the lead wire connection is correct, whether the measurement steps meet the requirements, etc.
- the user terminal can send the measured signal waveform to the server in the vehicle detection system, and the server can assist in judging the working condition of the measurement item. Therefore, after displaying the signal waveform corresponding to the measurement item, it may include:
- Step 270 Send the signal waveform to the server, so that the server compares the signal waveform with preset measurement result information to determine a measurement result; the preset measurement result information is configured with the parameter Preset measurement result information corresponding to the data; and receiving the measurement result sent by the server.
- the user terminal sends the measurement item ID corresponding to the selected measurement item, the associated vehicle information ID and the signal waveform of this measurement to the server; after receiving the measurement item ID and the vehicle information ID, the server stores the measurement item ID and the vehicle information ID from the server.
- the preset measurement result information corresponding to the parameter configuration data used by the user terminal for this measurement is obtained by querying. The content contained in the preset measurement result information is consistent with that in step 260 .
- the server compares the signal waveform with the reference waveform in the preset measurement result information, and determines whether the signal waveform is normal. If the preset measurement result information also includes preset measurement signal feature information, the server compares the current measurement signal feature information with the preset measurement signal feature information to determine whether they match. If the signal waveform is normal (optionally, the characteristic information of the measurement signal is also consistent), it can be determined that the measurement item is running normally; otherwise, the measurement item is not running normally. The server sends the measurement item ID and measurement result to the user terminal.
- the user terminal After receiving the measurement item ID and measurement result sent by the server, the user terminal displays the measurement result of the measurement item running normally or abnormally to the user.
- the user terminal may display various measurement guidance information obtained before, so as to prompt the user to further check whether the measurement operation is correct. Such as whether the lead wire connection is correct, whether the measurement steps meet the requirements, etc.
- the user terminal can also assist in judging the working condition of the measurement item by itself. Therefore, after displaying the signal waveform corresponding to the measurement item, it may include:
- Step 280 Acquire preset measurement result information corresponding to the parameter configuration data; compare the signal waveform with the preset measurement result information to determine a measurement result.
- the user terminal may acquire preset measurement result information corresponding to the parameter configuration data.
- the content contained in the preset measurement result information is consistent with that in step 260 .
- the user terminal After acquiring the preset measurement result information, the user terminal compares the signal waveform with the reference waveform in the preset measurement result information, and determines whether the signal waveform is normal. If the preset measurement result information also includes preset measurement signal feature information, the user terminal compares the current measurement signal feature information with the preset measurement signal feature information to determine whether they are consistent. If the signal waveform is normal (optionally, the characteristic information of the measurement signal is also consistent), it can be determined that the measurement item is running normally; otherwise, the measurement item is not running normally.
- the user terminal may display various measurement guidance information obtained before, so as to prompt the user to further check whether the measurement operation is correct. Such as whether the lead wire connection is correct, whether the measurement steps meet the requirements, etc.
- the user can edit the parameter configuration data of the selected measurement item to generate a corresponding value for the user.
- User-defined parameter configuration data associated with the ID and call the oscilloscope to load the user-defined parameter configuration data to measure the selected measurement item to generate user-defined preset measurement result information associated with the user ID.
- the user edits the parameter configuration data of the selected measurement item to generate customized parameter configuration data, and calls the oscilloscope to load the customized parameter configuration data to measure the selected measurement item to generate customized preset measurement result information
- the user terminal saves the self-defined parameter configuration data and the self-defined preset measurement result information to the vehicle information database according to the user's identification;
- obtaining the parameter configuration data of the selected measurement item includes:
- the preset measurement result information includes the user-defined preset measurement result information corresponding to the user's identifier.
- the user terminal queries and obtains the user-defined parameter configuration data corresponding to the selected measurement item from the vehicle information database according to the measurement item ID corresponding to the selected measurement item, the associated vehicle information ID and user ID. Further, user-defined preset measurement result information corresponding to the user-defined parameter configuration data can be obtained.
- the vehicle information database includes both the parameter configuration data and preset measurement result information preset by the vehicle detection platform, as well as the user-defined parameter configuration data and preset measurement result information, it will be preferentially obtained and used.
- User-defined parameter configuration data and preset measurement result information or prompt the user to make a selection.
- the measurement guidance information of the selected measurement item is acquired to prompt the user Connect a vehicle detection system including an oscilloscope to the measurement item according to the measurement guide information, then measure the selected measurement item, and display the signal waveform corresponding to the measurement item.
- various customized information data previously saved by the user can be acquired according to the user ID , which is equivalent to providing users with a personalized vehicle information database, which improves the flexibility of the above vehicle detection methods, improves the convenience and work efficiency of user detection and maintenance, facilitates users to perform quick maintenance, and further improves user business experience.
- FIG. 8 shows a schematic flowchart of another vehicle detection method provided by an embodiment of the present invention. On the basis of the vehicle detection method shown in FIG. 2 , a user-defined step is added. details as follows:
- Step 801 Obtain vehicle information to be tested, including user-defined vehicle information to be tested.
- the vehicle detection platform on the user terminal selects and determines the information of the vehicle to be tested. If there is no information corresponding to the vehicle to be tested in the vehicle information database of the vehicle detection platform, the user adds custom vehicle information to be tested (including the brand, model and year of the vehicle to be tested) and saves it to the above vehicle information database .
- the self-defined vehicle information to be tested also has a vehicle information ID and is associated with the user ID of the user. As an example, the user may add customized vehicle information to be tested by clicking the "+" symbol in the vehicle to be tested selection interface shown in FIG. 3 . In this way, when the vehicle information to be tested is displayed to the user next time, the user-defined vehicle information to be tested corresponding to the user ID is included.
- the user terminal obtains user-defined vehicle information to be tested according to the user's additional operation.
- Step 820 Acquire and display a user-defined measurement item associated with the vehicle information to be tested, and use the user-defined measurement item as a user-selected measurement item.
- the user can add a custom measurement item associated with the vehicle information to be measured, and save it to the vehicle information database.
- the self-defined measurement item has a measurement item ID, which corresponds to the user ID of the user, and is associated with the vehicle information ID of the vehicle information to be measured.
- the user can add a custom measurement item by clicking the "+" symbol in the measurement item selection and related measurement guide information display interface shown in FIG. 4 . In this way, when the measurement item associated with the vehicle information to be tested is displayed to the user next time, the user-defined vehicle information to be tested corresponding to the user ID is included.
- the user terminal acquires and displays the user-defined measurement item according to the user's additional operation, and uses the user-defined measurement item as the user-selected measurement item.
- Step 830 Acquire user-defined measurement guide information corresponding to the selected measurement item, and save the user-defined measurement guide information to the vehicle information database.
- the content of the measurement guidance information is consistent with the above-mentioned embodiment of the vehicle detection method, and details are not repeated here.
- the user can edit and add the measurement guide information of the selected measurement item in the vehicle detection platform through the user terminal, and generate a user-defined custom ID associated with the user ID. Measure the guidance information and save it to the above vehicle information database.
- the user-defined measurement guide information corresponds to the user ID of the user, and is associated with the measurement item ID corresponding to the selected measurement item and the associated vehicle information ID.
- FIG. 9 shows an example diagram of an interface for editing measurement guidance information of a measurement item provided by an embodiment of the present invention. As an example, the user may click the "+" symbol in the editing interface shown in FIG. 9 to add custom measurement guide information corresponding to the measurement item, such as test purpose, lead connection guide, and test step information.
- the user terminal acquires and displays the measurement guidance information corresponding to the selected measurement item next time, the user-defined measurement guidance information corresponding to the user ID is included.
- Step 840 When receiving the user's measurement start instruction, obtain user-defined parameter configuration data for the selected measurement item, and call the oscilloscope to load the user-defined parameter configuration data to measure the selected measurement item Generate customized preset measurement result information, and save the customized parameter configuration data and the corresponding customized preset measurement result information to the vehicle information database.
- the content of the parameter configuration data and the preset measurement result information is the same as the above-mentioned embodiment of the vehicle detection method, and details are not repeated here.
- the user can edit the parameter configuration data of the selected measurement item through the user terminal to generate a data associated with the user ID.
- Customized parameter configuration data and call the oscilloscope to load the customized parameter configuration data to measure the measurement item, generate customized preset measurement result information associated with the user ID, and configure the customized parameter configuration
- the data and the user-defined preset measurement result information are saved to the above-mentioned vehicle information database.
- the self-defined parameter configuration data and the self-defined preset measurement result information correspond to the user identification of the user, and the measurement item ID corresponding to the selected measurement item and the associated
- the above-mentioned vehicle information IDs are associated with each other.
- the user terminal when the user terminal acquires the parameter configuration data of the selected measurement item and the corresponding preset measurement result information next time, the user terminal includes the user-defined parameter configuration data corresponding to the user ID and the user-defined preset measurement result information. .
- vehicle detection method of the embodiment of the present invention is based on the same concept as the vehicle detection method shown in FIG. 2 , and the related content can be referred to the description in the above-mentioned vehicle detection method embodiment, which will not be repeated here.
- the user can add vehicle information to be tested, measurement items, measurement guidance information, parameter configuration data and/or preset measurement result information through the user terminal, and save them to the above-mentioned In the vehicle information database, and corresponding to the user identification, it is equivalent to providing a personalized vehicle information database for the user, so that the user-defined various measurement-related information can be quickly retrieved during the next vehicle detection.
- the above method improves the flexibility of vehicle detection, improves the convenience and work efficiency of the user's detection and maintenance, facilitates the user to perform quick maintenance, and further improves the user's business experience.
- FIG. 10 shows a schematic structural diagram of a vehicle detection device provided by an embodiment of the present invention.
- the vehicle detection device may specifically correspond to the user terminal in the above-mentioned vehicle detection system.
- the vehicle detection system includes an oscilloscope.
- the device 1000 includes:
- a first acquisition module 1010 configured to acquire vehicle information to be tested
- the second acquisition module 1020 is configured to acquire and display the measurement items associated with the vehicle information to be tested;
- a receiving module 1030 configured to receive a user's selection operation on the measurement item to obtain the selected measurement item
- a third acquiring module 1040 configured to acquire and display measurement guide information corresponding to the selected measurement item, so as to prompt the user to connect the vehicle detection system to the measurement item according to the measurement guide information;
- the display module 1050 is configured to measure the selected measurement item and display the signal waveform corresponding to the measurement item when the user's measurement start instruction is received.
- the above-mentioned measurement guideline information includes lead wire connection guideline.
- the measurement guidance information further includes at least one of the following: measurement purpose, measurement precautions, measurement description, and measurement guidance diagram.
- the above-mentioned display module 1050 includes:
- a fourth obtaining unit 1051 configured to obtain parameter configuration data of the selected measurement item when receiving a measurement start instruction from the user
- a calling unit 1052 configured to call the oscilloscope to load the parameter configuration data to measure the measurement item, acquire a measurement signal of the measurement item, and output a signal waveform corresponding to the measurement signal;
- the display unit 1053 is configured to display the signal waveform output by the oscilloscope.
- the above-mentioned apparatus 1000 further includes:
- the fifth acquisition module 1060 is configured to acquire preset measurement result information corresponding to the parameter configuration data; display the preset measurement result information, so that the user can compare the signal waveform with the preset measurement result information Compare and determine the measurement results.
- the vehicle detection system includes a server; the above-mentioned apparatus 1000 further includes:
- a sending module 1070 configured to send the signal waveform to the server, so that the server compares the signal waveform with preset measurement result information to determine a measurement result; the preset measurement result information is the same as the preset measurement result information.
- the preset measurement result information corresponding to the parameter configuration data;
- the second receiving module 1080 is configured to receive the measurement result sent by the server.
- the above-mentioned apparatus 1000 further includes:
- a determination module 1090 is configured to acquire preset measurement result information corresponding to the parameter configuration data; compare the signal waveform with the preset measurement result information to determine a measurement result.
- the above-mentioned apparatus 1000 further includes:
- the first saving module 1100 is configured to save the customized measurement guidance information to the vehicle information database according to the user's identification when the user edits the measurement guidance information of the selected measurement item to generate custom measurement guidance information ;
- the third obtaining module 1040 includes:
- the third acquiring unit 1041 is configured to acquire and display the customized measurement guide information corresponding to the selected measurement item from the vehicle information database according to the user identifier.
- the above-mentioned apparatus 1000 further includes:
- the second saving module 1110 is configured to generate customized parameter configuration data when the user edits the parameter configuration data of the selected measurement item, and invokes the oscilloscope to load the customized parameter configuration data to measure and generate the selected measurement item
- the user-defined preset measurement result information is used, the user-defined parameter configuration data and the user-defined preset measurement result information are saved to the vehicle information database according to the user's identification;
- the fourth obtaining unit 1051 includes:
- the fourth obtaining subunit 10511 configured to obtain the self-defined parameter configuration data of the selected measurement item from the vehicle information database according to the user identifier;
- the preset measurement result information includes the user-defined preset measurement result information corresponding to the identifier of the user.
- the measurement guide information of the selected measurement item is obtained, so as to prompt the user according to the measurement guide information.
- Connect a vehicle detection system including an oscilloscope to this measurement item then measure the selected measurement item, and display the signal waveform corresponding to the measurement item.
- the user can efficiently and accurately connect and measure the oscilloscope and the selected measurement item according to the measurement guide information, which greatly reduces the learning cost and usage threshold of the vehicle detection system including the oscilloscope, improves the vehicle detection efficiency, and simplifies the user operation. , to improve the user experience.
- vehicle information database improves the flexibility of vehicle detection, improves the convenience and work efficiency of user inspection and maintenance, facilitates quick maintenance and further improves user business experience.
- FIG. 11 shows a schematic structural diagram of a vehicle detection device provided by an embodiment of the present invention.
- the specific embodiment of the present invention does not limit the specific implementation of the vehicle detection device.
- the vehicle detection device may include: a processor (processor) 1102 , a communication interface (Communications Interface) 1104 , a memory (memory) 1106 , and a communication bus 1108 .
- the processor 1102 , the communication interface 1104 , and the memory 1106 communicate with each other through the communication bus 1108 .
- the communication interface 1104 is used to communicate with network elements of other devices such as clients or other servers.
- the processor 1102 is configured to execute the program 1110, and specifically may execute the relevant steps in the above embodiments of the vehicle detection method.
- program 1110 may include program code, which includes computer-executable instructions.
- the processor 1102 may be a central processing unit (CPU), or an Application Specific Integrated Circuit (ASIC), or one or more integrated circuits configured to implement embodiments of the present invention.
- the one or more processors included in the vehicle detection device may be the same type of processors, such as one or more CPUs; or may be different types of processors, such as one or more CPUs and one or more ASICs.
- the memory 1106 is used to store the program 1110 .
- Memory 1106 may include high-speed RAM memory, and may also include non-volatile memory, such as at least one disk memory.
- the program 1110 can be specifically called by the processor 1102 to make the vehicle detection device perform the following operations:
- the selected measurement item is measured, and the signal waveform corresponding to the measurement item is displayed.
- the measurement guideline information includes lead wire connection guideline.
- the measurement guidance information further includes at least one of the following: measurement purpose, measurement precautions, measurement description and measurement guidance diagram.
- measuring the selected measurement item when receiving a measurement start instruction from the user, measuring the selected measurement item, and displaying the signal waveform corresponding to the measurement item includes:
- the displaying the signal waveform corresponding to the measurement item includes:
- Acquire preset measurement result information corresponding to the parameter configuration data and display the preset measurement result information, so that the user can compare the signal waveform with the preset measurement result information to determine the measurement result.
- the vehicle detection system includes a server; after displaying the signal waveform corresponding to the measurement item, the method includes:
- the server sends the signal waveform to the server, so that the server compares the signal waveform with preset measurement result information to determine a measurement result;
- the preset measurement result information is corresponding to the parameter configuration data Preset measurement result information;
- the measurement result sent by the server is received.
- the displaying the signal waveform corresponding to the measurement item includes:
- Acquire preset measurement result information corresponding to the parameter configuration data compare the signal waveform with the preset measurement result information to determine a measurement result.
- the acquiring and displaying the measurement guidance information corresponding to the selected measurement item includes:
- the user-defined measurement guide information corresponding to the selected measurement item is acquired and displayed from the vehicle information database according to the user identification.
- the user edits the parameter configuration data of the selected measurement item to generate customized parameter configuration data, and calls the oscilloscope to load the customized parameter configuration data to measure the selected measurement item to generate customized preset measurement result information
- the self-defined parameter configuration data and the self-defined preset measurement result information are saved to the vehicle information database;
- the acquiring parameter configuration data of the selected measurement item includes:
- the preset measurement result information includes the user-defined preset measurement result information corresponding to the identifier of the user.
- the above-mentioned vehicle detection device can perform the actions of the vehicle detection device in the vehicle detection method provided by the embodiment of the present invention, and has corresponding functional modules and beneficial effects.
- the vehicle detection method provided by the embodiment of the present invention, and has corresponding functional modules and beneficial effects.
- the vehicle detection device acquires the measurement item of the vehicle to be tested, and when the user selects and determines the selected measurement item, acquires measurement guidance information of the selected measurement item, so as to prompt the user according to the measurement guidance information Connect a vehicle detection system including an oscilloscope to this measurement item, then measure the selected measurement item, and display the signal waveform corresponding to the measurement item.
- a vehicle detection system including an oscilloscope to this measurement item, then measure the selected measurement item, and display the signal waveform corresponding to the measurement item.
- vehicle information database improves the flexibility of vehicle detection, improves the convenience and work efficiency of user inspection and maintenance, facilitates quick maintenance and further improves user business experience.
- An embodiment of the present invention provides a computer-readable storage medium, where the storage medium stores at least one executable instruction, and when the executable instruction runs on a vehicle detection device, causes the vehicle detection device to execute any of the foregoing method embodiments vehicle detection method in .
- the storage medium stores at least one executable instruction, and when the executable instruction runs on a vehicle detection device, causes the vehicle detection device to execute any of the foregoing method embodiments vehicle detection method in .
- modules in the device in the embodiment can be adaptively changed and arranged in one or more devices different from the embodiment.
- the modules or units or components in the embodiments may be combined into one module or unit or component, and they may be divided into multiple sub-modules or sub-units or sub-assemblies. All features disclosed in this specification (including accompanying claims, abstract and drawings) and any method so disclosed may be employed in any combination, unless at least some of such features and/or procedures or elements are mutually exclusive. All processes or units of equipment are combined.
- Each feature disclosed in this specification may be replaced by alternative features serving the same, equivalent or similar purpose, unless expressly stated otherwise.
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Abstract
Description
Claims (11)
- 一种车辆检测方法,其特征在于,应用于车辆检测系统,所述系统包括示波器;所述方法包括:获取待测车辆信息;获取并显示与所述待测车辆信息相关联的测量项;接收用户对所述测量项的选择操作以得到选择的测量项;获取并显示所述选择的测量项对应的测量指引信息,以提示用户根据所述测量指引信息将所述车辆检测系统连接至所述测量项;当接收到用户的测量启动指示时,对所述选择的测量项进行测量,并显示所述测量项对应的信号波形。
- 根据权利要求1所述的方法,其特征在于,所述测量指引信息包括引线连接指引。
- 根据权利要求2所述的方法,其特征在于,所述测量指引信息还包括以下至少一个:测量目的、测量注意事项、测量说明及测量指引图。
- 根据权利要求1所述的方法,其特征在于,所述当接收到用户的测量启动指示时,对所述选择的测量项进行测量,并显示所述测量项对应的信号波形包括:当接收到用户的测量启动指示时,获取所述选择的测量项的参数配置数据,调用所述示波器加载所述参数配置数据对所述测量项进行测量,获取所述测量项的测量信号并输出所述测量信号对应的信号波形,显示所述示波器输出的信号波形。
- 根据权利要求4所述的方法,其特征在于,所述显示所述测量项对应的信号波形之后包括:获取与所述参数配置数据相应的预设测量结果信息;显示所述预设的测量结果信息,以使用户将所述信号波形与所述预设的测量结果信息进行比对,确定测量结果。
- 根据权利要求4所述的方法,其特征在于,所述车辆检测系统包括服务器;所述显示所述测量项对应的信号波形之后包括:向所述服务器发送所述信号波形,以使所述服务器将所述信号波形与预设测量结果信息进行比对,确定测量结果;所述预设测量结果信息为与所述参数配置数据相应的预设测量结果信息;接收所述服务器发送的所述测量结果。
- 根据权利要求4所述的方法,其特征在于,所述显示所述测量项对应的信号波形之后包括:获取与所述参数配置数据相应的预设测量结果信息;将所述信号波形与所述预设测量结果信息进行比对,确定测量结果。
- 根据权利要求1-3任一项所述的方法,其特征在于,所述方法包括:在用户编辑所述选择的测量项的测量指引信息生成自定义的测量指引信息时,根据所述用户的标识将所述自定义的测量指引信息保存至车辆信息数据库;所述获取并显示所述选择的测量项对应的测量指引信息包括:根据所述用户标识从所述车辆信息数据库获取并显示所述选择的测量项对应的自定义的测量指引信息。
- 根据权利要求5-7任一项所述的方法,其特征在于,所述方法包括:在用户编辑所述选择的测量项的参数配置数据生成自定义的参数配置数据,并调用示波器加载该自定义的参数配置数据对所述选择的测量项进行测量生成自定义的预设测量结果信息时,根据所述用户的标识将所述自定义的参数配置数据及自定义的预设测量结果信息保存至车辆信息数据库;所述获取所述选择的测量项的参数配置数据包括:根据所述用户标识从所述车辆信息数据库获取所述选择的测量项的自定义的参数配置数据;所述预设测量结果信息包括与所述用户的标识对应的所述自定义的预设测量结果信息。
- 一种车辆检测装置,其特征在于,应用于车辆检测系统,所述系统包括示波器;所述装置包括:第一获取模块,用于获取待测车辆信息;第二获取模块,用于获取并显示与所述待测车辆信息相关联的测量项;接收模块,用于接收用户对所述测量项的选择操作以得到选择的测量项;第三获取模块,用于获取并显示所述选择的测量项对应的测量指引信息,以提示用户根据所述测量指引信息将所述车辆检测系统连接至所述测量项;显示模块,用于当接收到用户的测量启动指示时,对所述选择的测量项进行测量,并显示所述测量项对应的信号波形。
- 一种车辆检测设备,其特征在于,包括:处理器、存储器、通信接口和通信总线,所述处理器、所述存储器和所述通信接口通过所述通信总线完成相互间的通信;所述存储器用于存放至少一可执行指令,所述可执行指令使所述处理器执行如权利要求1-9任意一项所述的车辆检测方法的操作。
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| US18/038,199 US20240003953A1 (en) | 2020-11-23 | 2021-11-12 | Vehicle Inspection Method, Apparatus and Device |
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| CN202011324716.9 | 2020-11-23 |
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| CN114563651A (zh) * | 2022-04-28 | 2022-05-31 | 深圳市星卡科技有限公司 | 一种示波器测试汽车的方法、装置、设备及存储介质 |
| CN114610004B (zh) * | 2022-05-10 | 2022-08-12 | 深圳市星卡软件技术开发有限公司 | 一种汽车电路故障测试的方法、装置和计算机设备 |
| CN115856384B (zh) * | 2022-12-28 | 2026-03-24 | 深圳市梦源格物科技有限公司 | 一种示波器及控制方法 |
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Also Published As
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| EP4246152A1 (en) | 2023-09-20 |
| EP4246152A4 (en) | 2024-07-24 |
| US20240003953A1 (en) | 2024-01-04 |
| CN112578200A (zh) | 2021-03-30 |
| CN112578200B (zh) | 2024-03-26 |
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