CN113593372A - Vehicle light test method, device, equipment and storage medium - Google Patents

Vehicle light test method, device, equipment and storage medium Download PDF

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Publication number
CN113593372A
CN113593372A CN202111139511.8A CN202111139511A CN113593372A CN 113593372 A CN113593372 A CN 113593372A CN 202111139511 A CN202111139511 A CN 202111139511A CN 113593372 A CN113593372 A CN 113593372A
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light
data information
test
simulation
scene data
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CN202111139511.8A
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CN113593372B (en
Inventor
成建洪
吴育校
罗启铭
杜冬冬
陈功
覃江威
熊皓
刘小双
廖宏军
冯建设
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Shenzhen Xinrun Fulian Digital Technology Co Ltd
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Shenzhen Xinrun Fulian Digital Technology Co Ltd
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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09BEDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
    • G09B19/00Teaching not covered by other main groups of this subclass
    • G09B19/16Control of vehicles or other craft
    • G09B19/167Control of land vehicles

Abstract

The application discloses a vehicle light test method, a device, equipment and a storage medium, comprising the following steps: if a starting instruction corresponding to the light test performed by an operator is detected, different types of simulation scene data information are extracted from a preset data storage unit, light simulation test questions are generated based on the simulation scene data information, the simulation scene data information in the light simulation test questions is displayed in a vehicle display screen, light operation signals corresponding to light control performed by the operator according to the examination section information in the simulation scene data information are received, the light operation signals are mapped into operation result data corresponding to the simulation scene data information, and the operation result data are comprehensively calculated to obtain a final test result. The problem of the problem bank word scene content single, the complexity and the variability of environment under the real scene are difficult to embody is solved, and then the technical problem of test effect is difficult to reach.

Description

Vehicle light test method, device, equipment and storage medium
Technical Field
The application relates to the technical field of vehicle light testing, in particular to a vehicle light testing method, device, equipment and storage medium.
Background
In the light use examination link of the third traditional vehicle driving examination subject, corresponding examination questions are generally randomly selected from a question bank, and then examinees operate a light controller according to scenes described by the examination questions in a mode of broadcasting the examination questions (scene description needing light use) by voice, and further, whether vehicle light requirements needed by the examination questions are met or not is judged according to operation results, so that whether vehicle light test links of the examinees pass the qualification or not is judged. However, the content of the text scene of the question bank is single, and the complexity and the variability of the environment in the real scene are difficult to embody, so that the test effect is difficult to achieve.
Disclosure of Invention
The application mainly aims to provide a vehicle lamplight test method, a vehicle lamplight test device, vehicle lamplight test equipment and a vehicle lamplight test storage medium, and aims to solve the technical problems that in the prior art, the content of an item bank text scene is single, the complexity and the variability of the environment under a real scene are difficult to embody, and the test effect is difficult to achieve.
In order to achieve the above object, the present application provides a vehicle light test method, including:
if the starting instruction corresponding to the light test performed by the operator is detected, different types of simulation scene data information are extracted from a preset data storage unit;
generating light simulation test questions based on the simulation scene data information, and displaying the simulation scene data information in the light simulation test questions in a vehicle display screen;
receiving a light operation signal corresponding to light control of the operator according to the examination section information in the simulated scene data information;
mapping each light operation signal into operation result data corresponding to each simulated scene data information;
and performing comprehensive calculation on the operation result data to obtain a final test result.
Optionally, after the step of extracting different types of simulated scene data information from the preset data storage unit after detecting the start instruction corresponding to the light test performed by the operator is performed, the vehicle light test method further includes:
acquiring pre-recorded and/or manufactured different types of simulated scene data information;
setting examination section information and preset operation answers corresponding to the examination point information in the simulated scene data information respectively;
and associating the identification corresponding to each simulated scene data information, the initial position of each examination section information and a preset operation answer, and storing the associated identification, the initial position of each examination section information and the preset operation answer into a preset data storage unit.
Optionally, the generating of the light simulation test questions based on the simulation scene data information, and displaying the simulation scene data information in the light simulation test questions on the vehicle display screen includes:
combining and associating different types of simulation scene data information to obtain the lamplight simulation test questions;
and displaying the data information of each simulation scene in the lamplight simulation test questions in a vehicle display screen according to a preset sequence.
Optionally, the step of mapping each light operation signal to operation result data corresponding to each simulated scene data information includes:
respectively mapping each light operation signal into a result data set;
and analyzing the result data set to obtain operation result data corresponding to the simulated scene data information.
Optionally, the step of performing comprehensive calculation on each operation result data to obtain a final test result includes:
comparing the operation result data with preset operation answers to obtain correct questions and error questions;
and calculating a final test result corresponding to the light simulation test questions based on the correct question number and the wrong question number.
Optionally, the starting instruction includes a training mode instruction, and after the step of receiving a light operation signal corresponding to light control performed by the operator according to each test session information in each piece of simulated scene data information, the vehicle light test method further includes:
and if the starting instruction is a training mode instruction, changing the simulated scene content displayed on the vehicle display screen based on the light operation signals respectively corresponding to the simulated scene data information.
Optionally, after the step of performing a comprehensive calculation on each operation result data to obtain a final test result, the vehicle light test method further includes:
and displaying a final test result corresponding to the light simulation test question on a vehicle display screen, and storing the final test result into a preset data storage unit.
The present application also provides a vehicle light testing device, which is a virtual device, the vehicle light testing device including:
the extraction module is used for extracting different types of simulation scene data information from the preset data storage unit after detecting a starting instruction corresponding to the light test performed by the operator;
the generating module is used for generating light simulation test questions based on the simulation scene data information and displaying the simulation scene data information in the light simulation test questions in the vehicle display screen;
the receiving module is used for receiving a light operation signal corresponding to light control of the operator according to the examination section information in the simulated scene data information;
the mapping processing module is used for mapping each light operation signal into operation result data corresponding to each simulated scene data information;
and the calculation module is used for carrying out comprehensive calculation on the operation result data to obtain a final test result.
The present application also provides a vehicle light test device, which is an entity device, and includes: the vehicle light testing system comprises a memory, a processor and a vehicle light testing program stored on the memory, wherein the vehicle light testing program is executed by the processor to realize the steps of the vehicle light testing method.
The present application also provides a storage medium, which is a computer-readable storage medium having a vehicle light test program stored thereon, where the vehicle light test program is executed by a processor to implement the steps of the vehicle light test method as described above.
The present application also provides a computer program product comprising a computer program which, when executed by a processor, performs the steps of the vehicle light test method as described above.
The application provides a vehicle light test method, a device, equipment and a storage medium, compared with the technical means that corresponding test questions are randomly selected in a question bank and then the examinees operate a light controller according to scenes described by the test questions in a mode of broadcasting the test questions by voice in the prior art, the application firstly extracts different types of simulated scene data information in a preset data storage unit after detecting a starting instruction corresponding to the light test of an operator, further extracts different types of simulated scene data information in the preset data storage unit after detecting the starting instruction corresponding to the light test of the operator, further generates light simulated test questions based on the simulated scene data information, and displays the simulated scene data information in the light simulated test questions in a vehicle display screen, the aim of forming rich and comprehensive vehicle light simulation test questions based on different types of simulation scene data information is achieved, light operation signals corresponding to light control of the operator according to the examination section information in the simulation scene data information are received, further, the light operation signals are mapped into operation result data corresponding to the simulation scene data information, comprehensive calculation is conducted on the operation result data, a final test result is obtained, the test questions formed by different types of simulation scene data information are displayed on a vehicle display screen, so that the operator can visually conduct light control according to different types of simulation scene data information, and whether the operator can reasonably and correctly use vehicle light under different weather conditions, different geographic environments and different vehicle condition environments is investigated, therefore, an operator can quickly and correctly use the vehicle light in the future in the real scene of complexity and variability, the technical defects that in the prior art, the content of the text scene of the question bank is single, the complexity and the variability of the environment in the real scene are difficult to embody, and the test effect is difficult to achieve are overcome, and the test effect of the light use in the driving test is improved.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and together with the description, serve to explain the principles of the application.
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, and it is obvious to those skilled in the art that other drawings can be obtained according to the drawings without inventive exercise.
FIG. 1 is a schematic flow chart illustrating a first embodiment of a vehicle light testing method according to the present application;
FIG. 2 is a schematic flow chart illustrating a second embodiment of the vehicle light testing method according to the present application;
fig. 3 is a schematic structural diagram of a vehicle light testing device in a hardware operating environment related to a vehicle light testing method in an embodiment of the present application.
The implementation, functional features and advantages of the objects of the present invention will be further explained with reference to the accompanying drawings.
Detailed Description
It should be understood that the specific embodiments described herein are merely illustrative of the present application and are not intended to limit the present application.
In a first embodiment of the vehicle light testing method according to the present application, referring to fig. 1, the vehicle light testing method is developed and applied based on a web, and includes:
step S10, if the starting instruction corresponding to the light test of the operator is detected, different types of simulation scene data information are extracted from a preset data storage unit;
in this embodiment, it should be noted that the starting instruction includes an instruction of a training mode and an instruction of an examination mode, where the training mode instruction is an instruction of an operator to perform vehicle light training, the examination mode instruction is an instruction of the operator to start performing vehicle light examination, and the different types of simulated scene data information are simulated scene data information recorded or made in advance, and include simulated scenes of various weather conditions, day and night environments, and various road conditions, for example, simulated scenes including passing, getting foggy days, meeting, passing through an intersection, and the like.
The method includes the steps of extracting different types of simulated scene data information from a preset data storage unit after a starting instruction corresponding to a light test performed by an operator is detected, specifically, the operator can select a training mode and an examination mode, obtaining the starting instruction corresponding to the modes according to the mode selected by the operator for performing the light test, extracting a preset number of different types of simulated scene data information from the preset data storage unit after the starting instruction of the light test performed by the operator is detected, so as to form test questions including various weather conditions, day and night environments and various road condition environments, and in specific implementation, the triggering mode for the starting instruction corresponding to the light test includes but is not limited to scanning triggering, touch triggering and voice triggering.
Step S20, generating light simulation test questions based on the simulation scene data information, and displaying the simulation scene data information in the light simulation test questions in a vehicle display screen;
in this embodiment, it should be noted that the vehicle display screen includes a front windshield of a vehicle and a display screen mounted on the vehicle, where the display medium corresponding to the front windshield of the vehicle includes a transparent display screen and other content display media with a display function.
And generating a light simulation test question based on the simulated scene data information, displaying the simulated scene data information in the light simulation test question on a vehicle display screen, and specifically combining and associating different types of simulated scene data information to obtain a light simulation test question, so as to investigate whether an operator can reasonably and correctly use the vehicle light under various weather conditions, day and night environments and various road conditions similar to real driving.
The step of generating light simulation test questions based on the simulation scene data information, and displaying the simulation scene data information in the light simulation test questions on a vehicle display screen includes:
step S21, combining and associating different types of simulation scene data information to obtain the lamplight simulation test questions;
in this embodiment, different types of simulation scene data information are combined and associated to obtain the lighting simulation test questions, and specifically, the simulation scene data information corresponding to different types are logically combined to form the lighting simulation test questions which are richer and accord with real conditions and logics, so that the operator is more comprehensively investigated.
And step S22, displaying the simulation scene data information in the light simulation test questions in a vehicle display screen according to a preset sequence.
In this embodiment, the data information of each simulation scene in the light simulation test questions is displayed on the vehicle display screen according to a preset sequence, and specifically, the data information of each simulation scene in the light simulation test questions is displayed on the vehicle display screen, so that the operator can visually see the information of each test section in the data information of each simulation scene.
Step S30, receiving a light operation signal corresponding to the light control of the operator according to the examination section information in the simulated scene data information;
in this embodiment, it should be noted that when an operator operates different lights of the vehicle, the operator generates an operation signal corresponding to the lights, where the lights of the vehicle include a far light, a near light, a left turn, a right turn, a double flash, and the like.
Receiving a light operation signal corresponding to light control performed by the operator according to each examination section information in each piece of simulated scene data information, specifically, according to each examination section information in different types of simulated scene data information, the operator needs to perform light operation according to the examination section information within a preset specified time, and further receives the light operation signal generated by the operator performing light operation, for example, when the vehicle runs under the conditions of no street lamp and poor illumination at night, if the operator starts a far light of an operating vehicle, then the light operation signal corresponding to the far light is received.
After the step of receiving a light operation signal corresponding to light control performed by the operator according to each examination section information in each piece of simulated scene data information, the vehicle light test method further includes:
step A10, if the start instruction is a training mode instruction, changing the content of the simulated scene displayed on the vehicle display screen based on the light operation signal corresponding to each piece of the simulated scene data information.
In this embodiment, it should be noted that the starting instruction includes a training mode instruction and an examination mode instruction, different execution processes are performed under different instructions, and when the starting instruction is the training mode instruction, after receiving light operation signals corresponding to the simulated scene data information, the simulated scene displayed on the vehicle display screen is changed according to the light operation signals, so that the operator can intuitively and immediately know the result generated based on the light operation signals and the corresponding scene animation.
Additionally, under the instruction of the examination mode, the result generated by the operation of the light control by the operator and the corresponding scene content change cannot be immediately displayed.
Step S40, mapping each light operation signal into operation result data corresponding to each simulated scene data information;
in this embodiment, it should be noted that the light operation signal is a digital signal, and the light operation signal needs to be processed into data that can be recognized by a corresponding system.
And mapping each light operation signal into operation result data corresponding to each simulated scene data information, specifically, mapping each light operation signal into a result data set, and further analyzing the result data set to obtain operation result data corresponding to each simulated scene data information.
The step of mapping each light operation signal into operation result data corresponding to each simulated scene data information includes:
step S41, respectively mapping each light operation signal into a result data set;
in this embodiment, it should be noted that the vehicle operation light signal generated by operating the vehicle light is a digital signal, and the digital signal needs to be converted into an analog signal.
And step S42, analyzing the result data set to obtain operation result data corresponding to each piece of simulated scene data information.
In this embodiment, the result data set is analyzed to obtain operation result data corresponding to each piece of simulated scene data information, and specifically, after the result data set is filtered, analyzed, and the like, operation result data corresponding to each piece of examination section information in each piece of simulated scene data information is obtained.
Step S50, performing comprehensive calculation on each operation result data to obtain a final test result.
In this embodiment, the operation result data is comprehensively calculated to obtain a final test result, and specifically, after the light test is finished, preset operation answers corresponding to the test session information in the simulated scene data information are compared with the operation result data, so that the number of wrong questions, the accuracy and other conditions corresponding to the current test are counted, and the final test result corresponding to the light simulated test questions is calculated.
Wherein, the step of comprehensively calculating the operation result data to obtain the final test result comprises the following steps:
step S51, comparing each operation result data with a preset operation answer to obtain a correct question number and an error question number;
in this embodiment, it should be noted that the preset operation answer is answer information set in advance for each test section information in each piece of simulated scene data information, and the preset operation answer and each test section information in each piece of simulated scene data information are stored in a preset data storage unit in an associated manner.
And comparing each operation result data with a preset operation answer to obtain a correct number of questions and an error number of questions, specifically, comparing each operation result data corresponding to the operator with the preset operation answer one by one to obtain the correct number of questions and the error number of questions corresponding to each operation result data.
Step S52, calculating a final test result corresponding to the light simulation test questions based on the number of correct questions and the number of wrong questions.
In this embodiment, a final test result corresponding to the light simulation test questions is calculated based on the number of correct questions and the number of wrong questions, specifically, a score corresponding to the light simulation test questions is calculated based on the number of correct questions and the number of wrong questions, and the score is used as the final test result, so that the use condition of the operator in vehicle light operation in different environments can be known according to the final test result.
After the step of performing comprehensive calculation on each operation result data to obtain a final test result, the vehicle light test method further includes:
and step C10, displaying the final test result corresponding to the light simulation test question on a vehicle display screen, and storing the final test result in a preset data storage unit.
In this embodiment, the final test result corresponding to the light simulation test question is displayed on a vehicle display screen, and the final test result is stored in a preset data storage unit, specifically, the final test result is displayed on the vehicle display screen, so that an operator can intuitively know details such as a correct rate, an error rate and the like corresponding to the test, and the final test result is stored in the preset data storage unit.
The embodiment of the application provides a vehicle light test method, compared with the technical means that corresponding examination questions are randomly selected in a question bank to enable examinees to operate a light controller according to scenes described by the examination questions in a mode of broadcasting the examination questions through voices, the technical means is adopted in the prior art, firstly, after a starting instruction corresponding to the light test of an operator is detected, different types of simulated scene data information are extracted from a preset data storage unit, then, after the starting instruction corresponding to the light test of the operator is detected, different types of simulated scene data information are extracted from the preset data storage unit, further, based on each piece of simulated scene data information, light simulated test questions are generated, and each piece of simulated scene data information in the light simulated test questions is displayed in a vehicle display screen, the aim of forming rich and comprehensive vehicle light simulation test questions based on different types of simulation scene data information is achieved, light operation signals corresponding to light control of the operator according to the examination section information in the simulation scene data information are received, further, the light operation signals are mapped into operation result data corresponding to the simulation scene data information, comprehensive calculation is conducted on the operation result data, a final test result is obtained, the test questions formed by different types of simulation scene data information are displayed on a vehicle display screen, so that the operator can visually conduct light control according to different types of simulation scene data information, and whether the operator can reasonably and correctly use vehicle light under different weather conditions, different geographic environments and different vehicle condition environments is investigated, therefore, an operator can quickly and correctly use the vehicle light in the future in the real scene of complexity and variability, the technical defects that in the prior art, the content of the text scene of the question bank is single, the complexity and the variability of the environment in the real scene are difficult to embody, and the test effect is difficult to achieve are overcome, and the test effect of the light use in the driving test is improved.
Further, referring to fig. 2, based on the first embodiment of the present application, in another embodiment of the present application, before the step of extracting different types of simulated scene data information from a preset data storage unit after the step of detecting a start instruction corresponding to a light test performed by an operator, the vehicle light test method further includes:
step B10, acquiring the pre-recorded and/or manufactured different types of simulated scene data information;
in this embodiment, different types of simulated scene data information are obtained and/or pre-recorded and/or generated, specifically, scene contents corresponding to different types of environments are obtained and pre-recorded or generated to cover the scene contents as basic data of test questions.
Step B20, setting examination section information and preset operation answers corresponding to the examination point information in the simulated scene data information respectively;
in this embodiment, each piece of examination section information and a preset operation answer corresponding to each piece of examination point information are respectively set in each piece of simulated scene data information, specifically, each piece of simulated scene data information is analyzed, and the piece of examination section information and the preset operation answer corresponding to each piece of examination point information are set at a suitable position of each piece of simulated scene data information, for example, the piece of examination section information passes through a sharp bend or a slope at night, and the preset operation answer is a long-short lamp alternation.
And step B30, associating the identifier corresponding to each piece of simulated scene data information, the initial position of each piece of examination section information and a preset operation answer, and storing the associated identifiers, the initial positions of the pieces of examination section information and the preset operation answer into a preset data storage unit.
In this embodiment, it should be noted that, when the purpose of the association storage is to perform a subsequent training or examination, the result of the lighting operation performed by the operator according to each examination section information in each simulated scene data information may be compared with the preset operation answer associated with each examination section information in each simulated scene data information, so as to determine whether the lighting operation is correct.
And associating the identifier corresponding to each piece of simulated scene data information, the initial position of each piece of examination section information and a preset operation answer, and storing the associated identifiers, the initial positions of each piece of examination section information and the preset operation answers corresponding to the initial positions of each piece of examination section information in a preset data storage unit, specifically, associating and binding the identifiers corresponding to each piece of simulated scene data information, the initial positions of each piece of examination section information corresponding to each piece of simulated scene data information and the preset operation answers corresponding to the initial positions of each piece of examination section information, and further storing the associated identifiers, the initial positions of each piece of examination section information and the preset operation answers in the preset data storage unit in an object storage or other file storage mode.
The embodiment of the application provides a vehicle light testing method, namely, different types of simulation scene data information are obtained and recorded in advance and/or manufactured, and then test section information and preset operation answers corresponding to the test point information are respectively set in the simulation scene data information, further, identification corresponding to the simulation scene data information, initial position of the test section information and the preset operation answers are correlated and stored in a preset data storage unit, so that different types of simulation scene data information, initial position of the test section information and the preset operation answers are correlated and bound and stored, and accordingly, different types of simulation scene data information are used as basic data of test questions, and accordingly, different types of simulation scene data information can be subsequently combined into test questions to investigate whether an operator can reasonably and correctly operate vehicle light, the method lays a foundation for overcoming the technical defects that the content of the question bank text scene in the prior art is single, the complexity and the variability of the environment in a real scene are difficult to embody, and further the test effect is difficult to achieve.
Referring to fig. 3, fig. 3 is a schematic structural diagram of a vehicle light testing device in a hardware operating environment according to an embodiment of the present application.
As shown in fig. 3, the vehicle light test apparatus may include: a processor 1001, such as a CPU, a memory 1005, and a communication bus 1002. The communication bus 1002 is used for realizing connection communication between the processor 1001 and the memory 1005. The memory 1005 may be a high-speed RAM memory or a non-volatile memory (e.g., a magnetic disk memory). The memory 1005 may alternatively be a memory device separate from the processor 1001 described above.
Optionally, the vehicle light testing device may further include a rectangular user interface, a network interface, a camera, RF (Radio Frequency) circuitry, sensors, audio circuitry, a WiFi module, and the like. The rectangular user interface may comprise a Display screen (Display), an input sub-module such as a Keyboard (Keyboard), and the optional rectangular user interface may also comprise a standard wired interface, a wireless interface. The network interface may optionally include a standard wired interface, a wireless interface (e.g., WIFI interface).
Those skilled in the art will appreciate that the vehicle light testing device configuration shown in figure 3 does not constitute a limitation of vehicle light testing devices and may include more or fewer components than shown, or some components may be combined, or a different arrangement of components.
As shown in fig. 3, a memory 1005, which is a kind of computer storage medium, may include an operating system, a network communication module, and a vehicle light test program therein. The operating system is a program that manages and controls the hardware and software resources of the vehicle lighting test device, supporting the operation of the vehicle lighting test program as well as other software and/or programs. The network communication module is used to implement communication between the components inside the memory 1005 and with other hardware and software in the vehicle light testing system.
In the vehicle light test apparatus shown in fig. 3, the processor 1001 is configured to execute the vehicle light test program stored in the memory 1005, and implement the steps of the vehicle light test method according to any one of the above-mentioned embodiments.
The specific implementation of the vehicle light testing device of the present application is substantially the same as that of each embodiment of the vehicle light testing method, and is not described herein again.
The present application also provides a vehicle light test device, which includes:
the extraction module is used for extracting different types of simulation scene data information from the preset data storage unit after detecting a starting instruction corresponding to the light test performed by the operator;
the generating module is used for generating light simulation test questions based on the simulation scene data information and displaying the simulation scene data information in the light simulation test questions in the vehicle display screen;
the receiving module is used for receiving a light operation signal corresponding to light control of the operator according to the examination section information in the simulated scene data information;
the mapping processing module is used for mapping each light operation signal into operation result data corresponding to each simulated scene data information;
and the calculation module is used for carrying out comprehensive calculation on the operation result data to obtain a final test result.
Optionally, the vehicle light testing device is further configured to:
acquiring pre-recorded and/or manufactured different types of simulated scene data information;
setting examination section information and preset operation answers corresponding to the examination point information in the simulated scene data information respectively;
and associating the identification corresponding to each simulated scene data information, the initial position of each examination section information and a preset operation answer, and storing the associated identification, the initial position of each examination section information and the preset operation answer into a preset data storage unit.
Optionally, the generating module is further configured to:
combining and associating different types of simulation scene data information to obtain the lamplight simulation test questions;
and displaying the data information of each simulation scene in the lamplight simulation test questions in a vehicle display screen according to a preset sequence.
Optionally, the mapping processing module is further configured to:
respectively mapping each light operation signal into a result data set;
and analyzing the result data set to obtain operation result data corresponding to the simulated scene data information.
Optionally, the computing module is further configured to:
comparing the operation result data with preset operation answers to obtain correct questions and error questions;
and calculating a final test result corresponding to the light simulation test questions based on the correct question number and the wrong question number.
Optionally, the vehicle light testing device is further configured to:
and if the starting instruction is a training mode instruction, changing the simulated scene content displayed on the vehicle display screen based on the light operation signal corresponding to each piece of simulated scene data information.
Optionally, the vehicle light testing device is further configured to:
and displaying a final test result corresponding to the light simulation test question on a vehicle display screen, and storing the final test result into a preset data storage unit.
The specific implementation of the vehicle light testing device of the present application is substantially the same as that of each embodiment of the vehicle light testing method, and is not described herein again.
The present application provides a storage medium, which is a computer-readable storage medium, and the computer-readable storage medium stores one or more programs, which are also executable by one or more processors for implementing the steps of the vehicle light testing method described in any one of the above.
The specific implementation manner of the computer-readable storage medium of the present application is substantially the same as that of each embodiment of the vehicle light test method, and is not described herein again.
The present application provides a computer program product, and the computer program product includes one or more computer programs, which can also be executed by one or more processors for implementing the steps of the vehicle light testing method described in any one of the above.
The specific implementation of the computer program product of the present application is substantially the same as that of each embodiment of the vehicle light testing method, and is not described herein again.
The above description is only a preferred embodiment of the present application, and not intended to limit the scope of the present application, and all modifications of equivalent structures and equivalent processes, which are made by the contents of the specification and the drawings, or which are directly or indirectly applied to other related technical fields, are included in the scope of the present application.

Claims (10)

1. A vehicle light testing method is characterized by comprising the following steps:
if the starting instruction corresponding to the light test performed by the operator is detected, different types of simulation scene data information are extracted from a preset data storage unit;
generating light simulation test questions based on the simulation scene data information, and displaying the simulation scene data information in the light simulation test questions in a vehicle display screen;
receiving a light operation signal corresponding to light control of the operator according to the examination section information in the simulated scene data information;
mapping each light operation signal into operation result data corresponding to each simulated scene data information;
and performing comprehensive calculation on the operation result data to obtain a final test result.
2. The vehicle light test method according to claim 1, wherein before the step of extracting different types of simulation scene data information from a preset data storage unit after the step of detecting a start instruction corresponding to the light test performed by the operator, the vehicle light test method further comprises:
acquiring pre-recorded and/or manufactured different types of simulated scene data information;
setting examination section information and preset operation answers corresponding to the examination point information in the simulated scene data information respectively;
and associating the identification corresponding to each simulated scene data information, the initial position of each examination section information and a preset operation answer, and storing the associated identification, the initial position of each examination section information and the preset operation answer into a preset data storage unit.
3. The vehicle lighting test method of claim 1, wherein the step of generating lighting simulation test questions based on the respective simulation scene data information and displaying the respective simulation scene data information in the lighting simulation test questions on a display screen of the vehicle comprises:
combining and associating different types of simulation scene data information to obtain the lamplight simulation test questions;
and displaying the data information of each simulation scene in the lamplight simulation test questions in a vehicle display screen according to a preset sequence.
4. The vehicle light testing method of claim 1, wherein the step of mapping each of the light manipulation signals to manipulation result data corresponding to each of the simulated scene data information comprises:
respectively mapping each light operation signal into a result data set;
and analyzing the result data set to obtain operation result data corresponding to the simulated scene data information.
5. The vehicle light test method of claim 1, wherein the step of performing a comprehensive calculation on each of the operation result data to obtain a final test result comprises:
comparing the operation result data with preset operation answers to obtain correct questions and error questions;
and calculating a final test result corresponding to the light simulation test questions based on the correct question number and the wrong question number.
6. The vehicle light test method of claim 1, wherein the start command comprises a training mode command,
after the step of receiving a light operation signal corresponding to light control performed by the operator according to each examination section information in each piece of simulated scene data information, the vehicle light test method further includes:
and if the starting instruction is a training mode instruction, changing the simulated scene content displayed on the vehicle display screen based on the light operation signals respectively corresponding to the simulated scene data information.
7. The vehicle light test method of any one of claims 1 to 6, wherein after the step of performing a comprehensive calculation on each of the operation result data to obtain a final test result, the vehicle light test method further comprises:
and displaying a final test result corresponding to the light simulation test question on a vehicle display screen, and storing the final test result into a preset data storage unit.
8. A vehicle light testing device, comprising:
the extraction module is used for extracting different types of simulation scene data information from the preset data storage unit after detecting a starting instruction corresponding to the light test performed by the operator;
the generating module is used for generating light simulation test questions based on the simulation scene data information and displaying the simulation scene data information in the light simulation test questions in the vehicle display screen;
the receiving module is used for receiving a light operation signal corresponding to light control of the operator according to the examination section information in the simulated scene data information;
the mapping processing module is used for mapping each light operation signal into operation result data corresponding to each simulated scene data information;
and the calculation module is used for carrying out comprehensive calculation on the operation result data to obtain a final test result.
9. A vehicle light testing device, comprising: a memory, a processor, and a vehicle light test program stored on the memory,
the vehicle light test program is executed by the processor to implement the vehicle light test method according to any one of claims 1 to 7.
10. A storage medium which is a computer-readable storage medium having a vehicle light test program stored thereon, the vehicle light test program being executed by a processor to implement the vehicle light test method according to any one of claims 1 to 7.
CN202111139511.8A 2021-09-28 2021-09-28 Vehicle light test method, device, equipment and storage medium Active CN113593372B (en)

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Publication number Priority date Publication date Assignee Title
CN204990791U (en) * 2015-08-04 2016-01-20 胡应坤 Driving school's mock examination device and system
CN110069175A (en) * 2018-01-23 2019-07-30 郑建锋 Driving Test simulates light training method and system
CN110111636A (en) * 2019-05-16 2019-08-09 珠海超凡视界科技有限公司 A kind of method, system and device for realizing the interaction of light driving lever based on VR
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