Intelligent vehicle lamp system based on SOA architecture and control method thereof
By using an intelligent vehicle lighting system based on SOA architecture, combined with mobile phones, cloud and vehicle-mounted systems, it achieves lighting, projection and intelligent recognition modes, solving the problem of mobile office and enabling convenient office work in the car.
Patent Information
- Application Number
- CN202310630006.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-30
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2043-05-30
AI Technical Summary
Existing vehicle lighting systems cannot meet the convenient office needs of mobile workers, and cannot enable them to work easily anytime, anywhere while enjoying entertainment.
Design an intelligent vehicle lighting system based on SOA architecture. Through the collaborative work of mobile devices, cloud, and vehicle-mounted systems, it can realize lighting, projection, and intelligent recognition modes, support wireless connectivity, and process and store information on media such as paper, electronic device screens, and whiteboards.
It expands the application scenarios of vehicle lighting systems, solves the anxiety of mobile office, and enables easy office work anytime and anywhere while enjoying entertainment.
Smart Images

Figure CN116546066B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of vehicle control, specifically relating to an intelligent vehicle lighting system based on SOA architecture and its control method. Background Technology
[0002] Tracing the history of automobile development over the past 100 years, the original purpose of car headlights was to provide illumination and improve nighttime visibility, thereby enhancing driver safety. However, as cars become increasingly intelligent, the role of traditional headlight components is subtly changing.
[0003] While fulfilling its lighting function, vehicle lights can also transmit information through projection by integrating with camera, navigation, and radar technologies, enhancing the interaction between the vehicle and people, communication between the vehicle and other road users, and improving the safe driving experience in various scenarios. Currently, many emerging car manufacturers have redefined the function of vehicle lights, but so far they still cannot meet the needs of mobile office workers for convenient in-vehicle office work. Summary of the Invention
[0004] The purpose of this invention is to provide an intelligent vehicle lighting system and its control method based on SOA architecture, which expands the application scenarios of intelligent vehicle lighting systems, solves the anxiety of mobile office, and allows everyone to work easily anytime and anywhere while having fun.
[0005] To solve the above-mentioned technical problems, the technical solution of the present invention is: an intelligent vehicle lighting system based on SOA architecture, comprising a wirelessly connected mobile phone terminal, a cloud terminal, and a vehicle terminal, wherein,
[0006] The cloud is used to define the vehicle lighting service type, recognition media type, and file saving method; the vehicle lighting service type includes at least lighting mode, projection mode, and intelligent recognition mode; the recognition media type is physical media; and the file saving method is a preset document format.
[0007] On the mobile device, control commands are output to the vehicle's infotainment system via the cloud. These commands include selecting the headlight service type, selecting the identification medium type, and choosing the file saving method.
[0008] On the vehicle-mounted system, it is used to switch the vehicle light service type according to control commands, identify and select media, and project the display onto the selected media according to the file saving method.
[0009] The lighting mode works by illuminating the vehicle with its headlights, the projection mode works by projecting the headlights onto a designated location, and the intelligent recognition mode works by recognizing the information projected onto the medium by the headlights and converting and storing the recognized information as a preset document format.
[0010] The default document formats include at least Word, Excel, PowerPoint, and TXT.
[0011] Physical media include at least paper, electronic device screens, blackboards, and whiteboards.
[0012] In lighting mode, the onboard device allows users to adjust the brightness of the headlights; in projection mode, the onboard device allows users to automatically or manually adjust the projection settings of the headlights.
[0013] A control method for an intelligent vehicle lighting system based on SOA architecture is also provided, including the following steps:
[0014] The vehicle lighting service type, recognition media type, and file saving method are defined through the cloud; the vehicle lighting service type includes at least lighting mode, projection mode, and intelligent recognition mode; the recognition media type is physical media; and the file saving method is a preset document format.
[0015] The mobile device outputs control commands to the cloud and the vehicle's infotainment system. These control commands include selecting the vehicle light service type, selecting the identification media type, and selecting the file saving method.
[0016] The vehicle-mounted system switches the headlight service type and identifies and selects media based on control commands, and projects the display onto the selected media according to the file saving method.
[0017] The lighting mode works by illuminating the vehicle with its headlights, the projection mode works by projecting the headlights onto a designated location, and the intelligent recognition mode works by recognizing the information projected onto the medium by the headlights and converting and storing the recognized information as a preset document format.
[0018] The default document formats include at least Word, Excel, PowerPoint, and TXT.
[0019] Physical media include at least paper, electronic device screens, blackboards, and whiteboards.
[0020] In lighting mode, the onboard device allows users to adjust the brightness of the headlights; in projection mode, the onboard device allows users to automatically or manually adjust the projection settings of the headlights.
[0021] A computer device is also provided, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the steps of the control method as described in any of the preceding claims.
[0022] A computer-readable storage medium is also provided, on which a computer program is stored, which, when executed by a processor, implements the steps of the control method as described in any of the preceding claims.
[0023] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0024] This invention utilizes a mobile app and cloud-based intelligent auxiliary services. These services process information on physical media and parse the content of the physical media according to a preset mode. This expands the application scenarios of intelligent vehicle lighting systems, alleviates the anxiety of mobile office work, and allows people to easily work anytime, anywhere while enjoying entertainment. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the workflow of an embodiment of the present invention; Detailed Implementation
[0026] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention. Furthermore, the technical features involved in the various embodiments of this invention described below can be combined with each other as long as they do not conflict with each other.
[0027] Example 1:
[0028] The technical solution of this invention is: an intelligent vehicle lighting system based on SOA architecture, comprising a wirelessly connected mobile phone terminal, cloud terminal, and vehicle terminal, wherein,
[0029] The cloud is used to define the vehicle lighting service type, recognition media type, and file saving method; the vehicle lighting service type includes at least lighting mode, projection mode, and intelligent recognition mode; the recognition media type is physical media; and the file saving method is a preset document format.
[0030] On the mobile device, control commands are output to the vehicle's infotainment system via the cloud. These commands include selecting the headlight service type, selecting the identification medium type, and choosing the file saving method.
[0031] On the vehicle-mounted system, it is used to switch the vehicle light service type according to control commands, identify and select media, and project the display onto the selected media according to the file saving method.
[0032] The lighting mode works by illuminating the vehicle with its headlights, the projection mode works by projecting the headlights onto a designated location, and the intelligent recognition mode works by recognizing the information projected onto the medium by the headlights and converting and storing the recognized information as a preset document format.
[0033] The default document formats include at least Word, Excel, PowerPoint, and TXT.
[0034] Physical media include at least paper, electronic device screens, blackboards, and whiteboards.
[0035] In lighting mode, the onboard device allows users to adjust the brightness of the headlights; in projection mode, the onboard device allows users to automatically or manually adjust the projection settings of the headlights.
[0036] Example 2:
[0037] A control method for an intelligent vehicle lighting system based on SOA architecture is also provided, including the following steps:
[0038] The vehicle lighting service type, recognition media type, and file saving method are defined through the cloud; the vehicle lighting service type includes at least lighting mode, projection mode, and intelligent recognition mode; the recognition media type is physical media; and the file saving method is a preset document format.
[0039] The mobile device outputs control commands to the cloud and the vehicle's infotainment system. These control commands include selecting the vehicle light service type, selecting the identification media type, and selecting the file saving method.
[0040] The vehicle-mounted system switches the headlight service type and identifies and selects media based on control commands, and projects the display onto the selected media according to the file saving method.
[0041] The lighting mode works by illuminating the vehicle with its headlights, the projection mode works by projecting the headlights onto a designated location, and the intelligent recognition mode works by recognizing the information projected onto the medium by the headlights and converting and storing the recognized information as a preset document format.
[0042] The default document formats include at least Word, Excel, PowerPoint, and TXT.
[0043] Physical media include at least paper, electronic device screens, blackboards, and whiteboards.
[0044] In lighting mode, the onboard device allows users to adjust the brightness of the headlights; in projection mode, the onboard device allows users to automatically or manually adjust the projection settings of the headlights.
[0045] A computer device is also provided, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the steps of the control method as described in any of the preceding claims.
[0046] A computer-readable storage medium is also provided, on which a computer program is stored, which, when executed by a processor, implements the steps of the control method as described in any of the preceding claims.
[0047] STEP 1: The functions and upstream and downstream business logic implemented by the cloud-based [Intelligent Assistance Service] are as follows:
[0048] The vehicle lighting service is divided into three types: lighting mode, projection mode, and intelligent recognition mode. The lighting mode realizes and provides the functions and effects of traditional lighting; the projection mode realizes the function of projecting the content displayed on the vehicle's terminal through the vehicle's headlight source; the intelligent recognition mode recognizes the text and other information on the medium illuminated by the vehicle's headlight source through text recognition technology, and converts the recognized content into a preset document format, including but not limited to: word / excel / PowerPoint / txt format.
[0049] (1) The media types identified are divided into the following four categories: paper, electronic product screen, traditional black / white board and other physical media. The specific type of file to be saved after conversion is selected and saved by the vehicle terminal user according to their personal needs.
[0050] The cloud-based [Intelligent Assistance Service] mainly implements the definition of vehicle light service type, recognition medium type, and file saving method. By integrating the above services and mounting them on the SOA service bus, it enables the smooth import and setting of vehicle light intelligent recognition scenarios under the SOA architecture.
[0051] STEP 2: The upstream and downstream logic of the functionalities implemented in the mobile app is as follows:
[0052] Based on the vehicle owner's personal usage habits and the headlight operating mode defined by the [Intelligent Assistance Service], if the headlight operating mode is set to illumination mode on the APP, the vehicle's intelligent assistance configuration APP can further configure the function options of the illumination mode, including but not limited to the brightness of the headlights; if the headlight operating mode is set to projection mode on the APP, the vehicle's intelligent assistance configuration APP can perform, but is not limited to, automatic / manual correction settings for the projection mode; if the headlight operating mode is intelligent recognition mode, the headlights recognize the content on the medium according to the scene medium recognition mode set by the cloud APP and save the file according to the supported file format.
[0053] The app allows for custom arrangement of vehicle lighting scenarios. Once the arrangement is complete, the scene information from the app is synchronized to the cloud via an interface. Only modes and scenarios defined in the cloud can be selected on the app. After cloud verification, the smart vehicle lighting scenario is transmitted to the vehicle and executed according to the specified mode.
[0054] STEP3: The upstream and downstream logic of the vehicle-side domain control function is as follows:
[0055] (1) The vehicle-mounted IVI is pre-installed with the "Intelligent Assist Configuration APP". After receiving the vehicle lighting scene information from the cloud, the IVI decodes the instructions and converts them into messages according to the predefined rules. At the same time, the vehicle lighting can be further configured according to the vehicle lighting working mode in the scene mode initiated by the APP. This patent focuses on further explaining the intelligent recognition mode. Other modes have been introduced in the previous steps and will not be repeated here.
[0056] (2) When the vehicle headlights are in the [Intelligent Recognition Mode], after receiving the instruction from the cloud, the vehicle automatically activates the intelligent recognition mode and automatically matches the medium presented in front of the headlights with the medium set in the APP. If the match is consistent, the content on the medium is recognized and converted according to the current mode. If the match is inconsistent, the vehicle will prompt: the recommended medium is "A" and the mobile phone setting mode is "B". Do you want to modify it according to the automatic matching mode? If you choose yes, the setting in the recognition scenario will not be modified according to the A medium mode. Otherwise, the medium defined in the scenario pre-arranged by the APP will be recognized.
[0057] Simultaneously, the headlights recognize the text and content on the predefined media pattern. The vehicle's infotainment system then intelligently matches the recognized content with relevant actions based on big data points stored in the system and retrieves them from the cloud. For example, if the content is in a table format, the system recommends actions based on user habits, such as editing. The text can be saved in an editable Excel format by default. After editing, the system can sync the content to the app or send it to the owner's email address (default). The saved content can then be projected using a projection mode.
[0058] Those skilled in the art will readily understand that the above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. A smart vehicle lighting system based on SOA architecture, characterized in that, This includes wirelessly connected mobile devices, cloud platforms, and in-vehicle systems. In the cloud, the vehicle lighting service type, recognition media type, and file saving method are defined; the vehicle lighting service type includes at least lighting mode, projection mode, and intelligent recognition mode; the recognition media type is physical media; and the file saving method is a preset document format. On the mobile device, control commands are output to the vehicle's infotainment system via the cloud. These commands include selecting the headlight service type, selecting the identification medium type, and choosing the file saving method. On the vehicle-mounted system, it is used to switch the vehicle light service type according to control commands, identify and select media, and project the display onto the selected media according to the file saving method. Among them, the lighting mode works by illuminating the vehicle with the headlights, the projection mode works by projecting the headlights onto a designated location, and the intelligent recognition mode works by recognizing the information projected onto the medium by the headlights and converting and storing the recognized information into a preset document format. In lighting mode, the onboard device allows users to adjust the brightness of the headlights; in projection mode, the onboard device allows users to automatically or manually adjust the projection settings of the headlights.
2. The intelligent vehicle lighting system based on SOA architecture according to claim 1, characterized in that, The default document formats include at least Word, Excel, PowerPoint, and TXT.
3. The intelligent vehicle lighting system based on SOA architecture according to claim 1, characterized in that, Physical media include at least paper, electronic device screens, blackboards, and whiteboards.
4. A control method for an intelligent vehicle lighting system based on SOA architecture as described in claim 1, characterized in that, Includes the following steps: The vehicle lighting service type, identification medium type, and file saving method are defined through the cloud; the vehicle lighting service type includes at least lighting mode, projection mode, and intelligent identification mode; the identification medium type is physical media. The file is saved in the default document format; The mobile device outputs control commands to the cloud and the vehicle's infotainment system. These control commands include selecting the vehicle light service type, selecting the identification media type, and selecting the file saving method. The vehicle-mounted system switches the headlight service type and identifies and selects media based on control commands, and projects the display onto the selected media according to the file saving method. Among them, the lighting mode works by illuminating the vehicle with the headlights, the projection mode works by projecting the headlights onto a designated location, and the intelligent recognition mode works by recognizing the information projected onto the medium by the headlights and converting and storing the recognized information into a preset document format. In lighting mode, the onboard device allows users to adjust the brightness of the headlights; in projection mode, the onboard device allows users to automatically or manually adjust the projection settings of the headlights.
5. The control method according to claim 4, characterized in that, The default document formats include at least Word, Excel, PowerPoint, and TXT.
6. The control method according to claim 4, characterized in that, Physical media include at least paper, electronic device screens, blackboards, and whiteboards.
7. A computer device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the computer program, it implements the steps of the control method as described in any one of claims 4-6.
8. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, it implements the steps of the control method as described in any one of claims 4-6.
Citation Information
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