A night driving car electronic outside rearview mirror management system
By merging video information and big data route positioning of the same road segment, the problem of duplicate data collection in the electronic rearview mirror management system for nighttime driving has been solved, achieving more efficient data storage and processing and improving driving safety.
Patent Information
- Application Number
- CN202411293905.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2044-09-14
AI Technical Summary
Existing electronic exterior rearview mirror management systems for nighttime driving repeatedly collect the same data during image recognition, resulting in excessively large data volumes, occupying storage space, making it impossible to store data for extended periods, and increasing data processing time, thus reducing system efficiency.
By working together with the image acquisition unit, camera control unit, graphics processing unit, image recognition unit, and data storage unit, video information from the same road segment is merged, big data is used to obtain route positioning, network information is matched, duplicate data is deleted, and image processing speed is improved.
It improved data storage cycle, increased data processing speed, enhanced driving safety, and optimized system efficiency.
Smart Images

Figure CN119261761B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of automobile electronic outside rearview mirror, in particular to a night driving automobile electronic outside rearview mirror management system. BACKGROUND
[0002] The electronic rearview mirror is an indirect vision device that acquires a specified field of view through a camera and a monitor system. It contains high-definition cameras, digital vision processing systems, safety systems, liquid crystal displays, and other electronic devices, and is a new type of rearview mirror that can replace traditional optical rearview mirrors. The electronic rearview mirror can improve night vision by enhancing image brightness and contrast, allowing drivers to more clearly observe the rear situation when driving at night. At the same time, the problem of dazzling caused by the rear vehicle turning on high beams can also be optimized.
[0003] As proposed in 202011175021.9, a control system and control method for an automobile electronic outside rearview mirror, which solves the problem of existing electronic rearview mirrors that are prone to jamming, causing drivers to be unable to obtain information about the rear of the vehicle, and when the vehicle is turned off, the electronic rearview mirror does not work, affecting the driver's ability to obtain information about the rear of the vehicle, resulting in a decrease in vehicle safety.
[0004] However, the existing night driving automobile electronic outside rearview mirror management system still repeatedly collects the same data when identifying the collected images, which results in excessive data, occupies data storage space, and cannot store long-term data. Moreover, the image judgment after each collection will greatly increase the data processing time, reducing the processing efficiency of the system. Therefore, a night driving automobile electronic outside rearview mirror management system is proposed to solve the above problems. SUMMARY
[0005] To overcome the shortcomings of the prior art, the present application provides a night driving automobile electronic outside rearview mirror management system, which specifically improves data storage period and increases data processing speed, quickly guides drivers to improve driving safety, and solves the problem of the prior art night driving automobile electronic outside rearview mirror management system that repeatedly collects the same data when identifying the collected images, which results in excessive data, occupies data storage space, and cannot store long-term data. Moreover, the image judgment after each collection will greatly increase the data processing time, reducing the processing efficiency of the system.
[0006] To achieve the above purpose, the present application provides the following technical solution: a night driving automobile electronic outside rearview mirror management system, comprising an operation module and a remote terminal, the operation module comprising a control interaction unit, an instruction transmission unit, a data receiving unit and a data display unit;
[0007] The control interaction unit is used for guiding the user to input operation instructions, and displaying the front end of the automobile electronic outside rearview mirror management system through the display screen;
[0008] The instruction transmission unit is used for transmitting the control instructions input by the user to the remote terminal, and the remote terminal executes the control commands according to the program operation instructions after receiving the instructions;
[0009] The data receiving unit is used for receiving the data collected by the remote terminal and transmitting the data to the data display unit;
[0010] The data display unit is used for displaying the data collected by the remote terminal to the user for viewing;
[0011] The remote terminal comprises an image collection unit, a camera control unit, an instruction control unit, a graphics processing unit, an image recognition unit, a data storage unit and a driving guidance unit;
[0012] The image collection unit is used for shooting the road condition information in the vehicle driving process through the electronic rearview mirror camera;
[0013] The camera control unit is used for controlling the orientation of the image collection camera, and adopts two modes of instruction control and automatic shooting;
[0014] The instruction control unit is used for receiving the control instructions sent by the operation module, executing the control commands through the controller, and realizing intelligent control by using a single-chip microcomputer;
[0015] The graphics processing unit is used for processing the collected image information in terms of definition and night vision infrared, and storing the processed image information;
[0016] The image recognition unit is used for judging the obstacles in the processed image, identifying the obstacles in the image, and sending the obstacle information to the driving guidance unit if there are obstacles;
[0017] The data storage unit is used for storing the collected road condition information, merging the video information of the same road section when storing the video file, and updating the image information according to the implemented road condition;
[0018] The driving guidance unit is used for judging the obstacles appearing in the image, providing driving suggestions for the driver by using an intelligent language system, transmitting the driving suggestions to the data display unit by the data receiving unit, reminding in the form of language, storing the guidance suggestions, and providing driving guidance directly after matching the guidance suggestions when the same image information appears.
[0019] Preferably, the control interaction unit is specifically the electronic rearview mirror control software written in the automobile control screen, and the instruction transmission unit realizes data transmission through Bluetooth information.
[0020] Preferably, the data receiving unit stores the received data, and the data display unit displays the collected vehicle driving rear side image information on the automobile control screen through the control interaction unit.
[0021] Preferably, the image collecting unit collects vehicle driving rear side information by using a night vision camera, and the camera control unit controls the angle of the image collecting camera through a single-chip microcomputer.
[0022] Preferably, the instruction control unit connects the image collecting unit, the camera control unit, the image processing unit, the image recognition unit, the data storage unit and the driving guidance unit through a Bluetooth signal, and the image processing unit enhances and suppresses noise of the collected image information by using an image super-resolution algorithm.
[0023] Preferably, the image recognition unit judges the same road section appearing in the image, matches the image information stored in the data storage unit when the same road section information is collected, directly calls the guidance suggestion of the image, and directly feeds back to the driver.
[0024] Preferably, the data storage unit acquires road section information by using big data, positions the collected image by using a network, acquires road condition information of the positioning point, and verifies the collected image information.
[0025] Preferably, the driving guidance unit automatically acquires the same image information in the data storage unit, merges the image information of the same road section, and deletes sufficient data.
[0026] An execution medium of a night driving automobile electronic outside rearview mirror system, the execution medium is used for executing a night driving automobile electronic outside rearview mirror management system, and specifically is a vehicle-mounted tablet computer.
[0027] Compared with the prior art, the technical scheme of the application has the following beneficial effects:
[0028] 1、The present application collects the road conditions of the night driving automobile through the electronic outside rearview mirror, processes the collected data in terms of image definition, improves the image recognition, merges the same data in the image storage process, stores the road section information with the same image content, acquires the route position by using big data, matches the network information, judges and recognizes the data of the road section, repeatedly deletes the data of the acquired image information, timely deletes the repeated data, and enables the system to store more data.
[0029] 2、The present application is matched to the collected data, if the collected data has the same data as the data, the database data is directly matched, the corresponding image of the database is directly fed back to the value, which can make the guiding judgment more quickly, improve the speed of image processing, so as to improve the efficiency of the night driving automobile electronic outside rearview mirror management system. BRIEF DESCRIPTION OF DRAWINGS
[0030] Fig. 1 The framework diagram of the present application is shown in the figure.
[0031] Fig. 2 The control structure diagram of the present application is shown in the figure. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0033] Reference Figs. 1-2 The night driving automobile electronic outside rearview mirror management system in the embodiment includes an operation module and a remote terminal, and the operation module includes a control interaction unit, an instruction transmission unit, a data receiving unit and a data display unit.
[0034] The control interaction unit is used to guide the user to input operation instructions, and the automobile electronic outside rearview mirror management system front end is displayed through the display screen.
[0035] The instruction transmission unit is used to transmit the control instructions input by the user to the remote terminal, and the remote terminal executes the control commands according to the program operation instructions after receiving the instructions.
[0036] The data receiving unit is used to receive the data collected by the remote terminal, and the data is transmitted to the data display unit.
[0037] The data display unit is used to display the data collected by the remote terminal to the user for viewing.
[0038] The remote terminal includes an image acquisition unit, a camera control unit, an instruction control unit, a graphics processing unit, an image recognition unit, a data storage unit and a driving guidance unit.
[0039] The image acquisition unit is used to shoot the road condition information in the vehicle driving process through the electronic rearview mirror camera.
[0040] The camera control unit is used to control the orientation of the image acquisition camera, and two modes of instruction control and automatic shooting are adopted.
[0041] The instruction control unit is used to receive control instructions from the operation module, execute control commands through the controller, and achieve intelligent control using a microcontroller.
[0042] The graphics processing unit is used to perform sharpness processing and night vision infrared processing on the acquired image information, and to store the processed image information;
[0043] The image recognition unit is used to determine obstacles in the processed image and identify obstacles in the image. If an obstacle is found, the obstacle information will be sent to the driving guidance unit.
[0044] The data storage unit is used to store the collected road condition information. When storing video files, video information of the same road segment is merged, and the image information is updated according to the actual road conditions.
[0045] The driving guidance unit is used to identify obstacles in the image and provides driving suggestions to the driver using an intelligent language system. The driving suggestions are transmitted from the data receiving unit to the data display unit and reminded in a verbal way. The guidance suggestions are stored internally, and when the same image information appears, the guidance suggestions will be matched and used directly to provide driving guidance.
[0046] In this embodiment, a control interaction unit is set up to realize intelligent interaction for managing the electronic exterior rearview mirror of the car during nighttime driving. The control interaction unit collects the user's operation commands and uses the electronic rearview mirror control software written into the car control screen for real-time processing.
[0047] In this embodiment, the command transmission unit transmits data via Bluetooth. When the driver inputs a control command, the command is transmitted to the remote terminal via Bluetooth. The data receiving unit stores the received data, and the data display unit displays the collected rear-side image information of the vehicle on the car control screen through the control interaction unit.
[0048] In this embodiment, during the image acquisition phase, the image acquisition unit captures the vehicle's route information using a night vision camera. The night vision camera's angle and orientation are adjusted via a camera control unit, either manually or automatically in a 360° no-blind-spot shooting mode.
[0049] In this embodiment, the command control unit collects and executes various commands. It is connected to the graphics acquisition unit, camera control unit, image processing unit, graphics recognition unit, data storage unit, and driving guidance unit via Bluetooth signal.
[0050] In the embodiment, the image processing unit adopts an image super-resolution algorithm to enhance and suppress noise of the collected image information, and the image recognition unit judges the same road section appearing in the image, and when the same road section information is collected, the matching data stored in the data storage unit is matched, the guiding suggestion of the image is directly called, and is directly fed back to the driver.
[0051] In the embodiment, the data storage unit is interconnected with a data network through a big data algorithm, the positioning information is obtained through the network, the road condition information of the positioning point is obtained through the network, the road condition information of the network is matched with the implemented road condition information box, the accuracy of the photographed road condition information is verified, and the driving guidance unit automatically obtains the same image information in the data storage unit, the image information of the same road section is merged, and sufficient data is deleted.
[0052] By adopting the above technical scheme, the present application collects the road condition of the night driving car through the electronic outside rearview mirror, processes the collected data in image definition, improves the image recognition, merges the same data in the image storage process, stores the road section information with the same image content, and obtains the route positioning through big data, matches the network information, judges and recognizes the data of the road section, so as to repeatedly delete the repeated data of the obtained image information, delete the repeated data in time, and make the system store more data. In the matching operation of the collected data, if the collected data has the same data as the data, the database data is directly matched, the guiding information of the image corresponding to the database is directly fed back to the value, the guiding judgment can be made more quickly, the image processing speed is improved, the efficiency of the night driving car electronic outside rearview mirror management system is improved, and the problem that the night driving car electronic outside rearview mirror management system in the prior art repeatedly collects the same data when recognizing the collected image is solved, which leads to too large data, occupies the data storage space, cannot store long-time data, and greatly increases the data processing time when the image is judged after each collection, reduces the processing efficiency of the system.
[0053] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; it is not intended to exclude myriad other embodiments of the present application that other inventors can develop based on the same general inventive concepts embodied by the described embodiments. That is, although the present application is described in terms of particular embodiments and implementations, it is to be understood that the terminology used is for the purpose of descriptive clarity and that it is intended to be limited only by the words recited in the appended claims. The scope of the present application shall be limited only by the claims.
[0054] While the embodiments of the application have been shown and described herein, it is to be understood that the application is not limited to these embodiments. Rather, numerous modifications are possible without departing from the spirit and scope of the present application as delineated by the claims and their equivalents.
Claims
1. A system for managing an electronic outside rearview mirror of a vehicle at night, comprising an operating module and a remote terminal, characterized in that: The operation module comprises a control interaction unit, an instruction transmission unit, a data receiving unit and a data display unit; The control interaction unit is used to guide the user to input operation instructions and display the front end of the automobile electronic outside rearview mirror management system through a display screen; The instruction transmission unit is used to transmit the control instructions input by the user to a remote terminal, and the remote terminal executes the control commands according to the program operation instructions after receiving the instructions; The data receiving unit is used to receive the data collected by the remote terminal and transmit the data to the data display unit; The data display unit is used to display the data collected by the remote terminal to the user for viewing; The remote terminal comprises an image collection unit, a camera control unit, an instruction control unit, a graphics processing unit, an image recognition unit, a data storage unit and a driving guidance unit; The image collection unit is used to shoot the road condition information in the vehicle driving process through the electronic rearview mirror camera; The camera control unit is used to control the orientation of the image collection camera, and two modes of instruction control and automatic shooting are adopted; The instruction control unit is used to receive the control instructions sent by the operation module and execute the control commands through the controller, and a single-chip microcomputer is adopted to realize intelligent control; The graphics processing unit is used to process the collected image information in terms of definition and night vision infrared, and store the processed image information; The image recognition unit is used to judge the obstacles in the processed image, and identify the obstacles in the image, and if obstacles exist, the obstacle information will be sent to the driving guidance unit; The data storage unit is used to store the collected road condition information, and when the video file is stored, the video information of the same road section is merged, and the image information is updated according to the real-time road condition; The driving guidance unit is used to judge the obstacles appearing in the image, and an intelligent language system is adopted to provide driving suggestions for the driver, the driving suggestions will be transmitted to the data display unit by the data receiving unit, and the driving suggestions will be reminded in the form of language, and the guidance suggestions will be stored, and after the same image information appears, the guidance suggestions will be matched to directly provide driving guidance.
2. The electronic outside rearview mirror management system for a vehicle traveling at night according to claim 1, wherein: The control interaction unit is specifically an electronic rearview mirror control software written in the automobile control screen, and the instruction transmission unit realizes data transmission through Bluetooth information.
3. The automotive electronic outside rearview mirror management system for night driving of claim 1, wherein: The data receiving unit stores the received data, and the data display unit displays the collected vehicle driving rear side image information on the automobile control screen through the control interaction unit.
4. The automotive electronic outside rearview mirror management system for night driving of claim 1, wherein: The image collection unit adopts a night vision camera to collect the vehicle driving rear side information, and the camera control unit adjusts the angle of the image collection camera through a single-chip microcomputer.
5. The automotive electronic outside rearview mirror management system for night driving of claim 1, wherein: The instruction control unit connects the image collection unit, the camera control unit, the instruction control unit, the graphics processing unit, the data storage unit and the driving guidance unit through a Bluetooth signal, and the graphics processing unit adopts an image super-resolution algorithm to enhance the collected image information and suppress noise.
6. The automotive electronic outside rearview mirror management system for night driving of claim 1, wherein: The image recognition unit judges the same road section appearing in the image, and when the same road section information is collected, the image information stored in the data storage unit is matched, the guiding suggestion of the image is directly called, and the driver is directly fed back.
7. The automotive electronic outside rearview mirror management system of claim 1, wherein: The data storage unit acquires road section information by big data, positions the collected image by network, and acquires the road condition information of the positioning point, and verifies the collected image information.
8. The automotive electronic outside rearview mirror management system of claim 1, wherein: The driving guidance unit automatically acquires the same image information in the data storage unit, merges the image information of the same road section, and deletes the repeated data.
9. An electronic vehicle rearview mirror system execution medium for night driving, characterized by: The execution medium is used for executing the night driving automobile electronic outside rearview mirror management system of any one of claims 1-8, and specifically is a vehicle-mounted tablet computer.
Citation Information
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