Anti-glare system and vehicle
By installing adjustable glass covers and multi-camera image fusion technology on electronic exterior rearview mirrors, the glare problem of electronic exterior rearview mirrors during nighttime driving has been solved, thus improving driving safety.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2026-04-02
AI Technical Summary
Electronic side mirrors are prone to glare from oncoming vehicles at night, which can affect driving safety.
The anti-glare system consists of a first camera and an adjustable glass cover. The adjustable glass cover adjusts the light transmittance, and combined with multi-camera image fusion technology, it reduces the impact of glare on the driver.
To effectively reduce the impact of glare on the driver and ensure driving safety, the electronic exterior rearview mirror improves the field of vision by automatically adjusting the transmittance of the glass cover and using image fusion technology.
Smart Images

Figure CN2025079120_02042026_PF_FP_ABST
Abstract
Description
Anti-glare system and vehicle
[0001] Cross-reference to related applications
[0002] The present disclosure claims priority to the Chinese patent application No. 2024223993164, filed on September 29, 2024, and entitled "Anti-glare system and vehicle", the entire content of which is incorporated herein by reference. TECHNICAL FIELD
[0003] The present disclosure relates to the technical field of vehicles, in particular, to an anti-glare system and vehicle. BACKGROUND
[0004] Electronic outside rearview mirror is an electronic rearview mirror system composed of high-definition camera, image sensor, image processor, display screen and the like. Compared with the traditional outside rearview mirror, the electronic outside rearview mirror not only can be more in line with the aerodynamic design, but also has greater improvement in the visual angle and night tolerance. However, the electronic outside rearview mirror also has some defects in the use process, especially in the process of driving at night, when the rearward vehicle shines the electronic outside rearview mirror, glare problem is easy to occur, which will greatly affect the driving safety. SUMMARY
[0005] In order to overcome the problems in the related art, the present disclosure provides an anti-glare system and vehicle.
[0006] According to a first aspect of the embodiments of the present disclosure, an anti-glare system is provided, which comprises:
[0007] a first camera, which is an electronic outside rearview mirror camera;
[0008] an adjustable glass cover connected with the first camera.
[0009] In the above technical solution provided by the embodiments of the present disclosure, the anti-glare system comprises a first camera, a glare control module and an adjustable glass cover, wherein the first camera is an electronic outside rearview mirror camera, which can be connected with the adjustable glass cover. By introducing the adjustable glass cover, the present disclosure can simply and effectively realize the processing of glare, thereby ensuring the driving safety.
[0010] Other features and advantages of the present disclosure will be described in detail in the following specific implementation manner. BRIEF DESCRIPTION OF DRAWINGS
[0011] The accompanying drawings are included to provide a further understanding of the present disclosure and constitute a part of the specification, which together with the specific implementation manner below, serve to explain the present disclosure but do not constitute a limitation of the present disclosure. In the drawings:
[0012] FIG. 1 is a block diagram of a glare prevention system, according to an exemplary embodiment.
[0013] FIG. 2 is a structural diagram of an adjustable glass cover in a glare prevention system, according to an exemplary embodiment.
[0014] FIG. 3 is a block diagram of a glare prevention system including a glare control module, according to an exemplary embodiment.
[0015] FIG. 4 is a block diagram of another glare prevention system, according to an exemplary embodiment.
[0016] FIG. 5 is a block diagram of another glare prevention system including a third camera, according to an exemplary embodiment.
[0017] FIG. 6 is a block diagram of another glare prevention system including a second camera and a third camera, according to an exemplary embodiment.
[0018] FIG. 7 is an example diagram of a glare prevention system implementing a glare function, according to an exemplary embodiment.
[0019] FIG. 8 is a block diagram of a vehicle, according to an exemplary embodiment.
[0020] Reference Signs 100 - glare prevention system 110 - first camera 120 - glare control module 121 - brightness processing module 122 - glass cover control module 123 - first camera control module 124 - image processing module 125 - second camera control module 126 - display screen control module 130 - adjustable glass cover 140 - electronic outside rearview mirror display screen 150 - second camera 160 - third camera DETAILED DESCRIPTION
[0021] The specific embodiments of the present disclosure will be described below in detail with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are merely intended to illustrate and explain the present disclosure, and are not intended to limit the present disclosure.
[0022] The exemplary embodiments will be described in detail herein with reference to the attached drawings. In the following description, like reference numerals refer to like elements, unless the context clearly dictates otherwise. The following description of exemplary embodiments is not representative of all possible embodiments consistent with the present disclosure. Rather, they are merely examples of apparatuses and methods consistent with some aspects of the present disclosure as detailed in the appended claims.
[0023] In the description of the present disclosure, the terms such as "first", "second", etc. are used to distinguish similar objects, and do not necessarily mean a specific order or sequence. In addition, in the description with reference to the drawings, the same reference numerals in different drawings represent the same elements, unless otherwise stated.
[0024] The following description of some embodiments of the present disclosure is not representative of all embodiments consistent with the present disclosure. Rather, they are merely examples of apparatuses and methods consistent with some aspects of the present disclosure as detailed in the appended claims.
[0025] During night driving, glare problem is easy to occur when the rearward vehicle illuminates the electronic outside rearview mirror, which greatly affects the driving safety. Glare refers to a visual condition in which the visual field has an inappropriate luminance distribution, or there is an extreme luminance contrast in space or time, so as to cause visual discomfort and reduce the visibility of objects.
[0026] In order to reduce the influence of glare on the driver, the anti-glare system according to the embodiments of the present disclosure can include a first camera and an adjustable glass cover, which can simply and effectively reduce the influence of glare on the driver, that is, by adjusting the transmittance of any area of the glass cover on the electronic outside rearview mirror, the present disclosure can adjust the light intensity of the light passing through the glass cover and illuminating into the camera of the electronic outside rearview mirror from any direction.
[0027] FIG. 1 is a block diagram of an anti-glare system according to an exemplary embodiment, as shown in FIG. 1, the anti-glare system 100 can include a first camera 110 and an adjustable glass cover 130.
[0028] In the embodiments of the present disclosure, the first camera 110 can be an electronic outside rearview mirror camera, which can be connected with the adjustable glass cover 130.
[0029] In some embodiments, the structure of the adjustable glass cover 130 can be as shown in FIG. 2, based on FIG. 2, the adjustable glass cover 130 can include an inner glass substrate 131, an outer glass substrate 132 and a liquid crystal layer 133. The liquid crystal layer 133 can be located between the inner glass substrate 131 and the outer glass substrate 132, and the adjustable glass cover 130 is used to adjust the light transmittance.
[0030] Specifically, the liquid crystal layer 133 can include liquid crystal molecules having optical rotation characteristics, which can change the propagation direction of light. In addition, the liquid crystal molecules can include charged particles, which can change from being uniformly distributed in the liquid crystal molecules to converging to the two poles of the liquid crystal molecules under the action of an electric field, so that the two poles of the liquid crystal molecules have polarity, and the interaction between the external electric field and the two poles of the liquid crystal molecules can cause the liquid crystal molecules to be angularly deflected.
[0031] Optionally, the adjustable glass cover can further include an inner liquid crystal layer control circuit 134 and an outer liquid crystal layer control circuit 135, wherein the inner liquid crystal layer control circuit 131 can be arranged between the inner side of the inner glass substrate 131 and the first side of the liquid crystal layer 133, and the outer liquid crystal layer control circuit 135 can be arranged between the inner side of the outer glass substrate 132 and the second side of the liquid crystal layer 133.
[0032] In addition, the inner liquid crystal layer control circuit 134 can include a first transparent metal trace (not given a figure), and the outer liquid crystal layer control circuit 135 can include a second transparent metal trace (not given a figure), wherein the first transparent metal trace and the second transparent metal trace are oppositely arranged, and the length and width of the first transparent metal trace and the second transparent metal trace are the same.
[0033] In other words, the inner liquid crystal layer control circuit 134 and the outer liquid crystal layer control circuit 135 can be composed of transparent metal traces, and the metal traces in the two circuits are equal in length and width and are oppositely arranged, so that a capacitor is formed between the trace electrodes of the inner liquid crystal layer control circuit 134 and the outer liquid crystal layer control circuit 135.
[0034] Optionally, when voltages of different polarities and strengths are applied to the inner liquid crystal layer control circuit 134 and the outer liquid crystal layer control circuit 135, the strength and direction of the electric field formed between the trace electrodes of the inner liquid crystal layer control circuit 134 and the outer liquid crystal layer control circuit 135 can change accordingly, thereby changing the flipping direction of the liquid crystal molecules in the adjustable glass cover 130, changing the propagation direction of external light passing through the liquid crystal layer 133, and further adjusting the light transmittance of different regions of the adjustable glass cover 130.
[0035] In summary, the adjustable glass cover 130 in the embodiment of the present disclosure can be composed of the inner glass substrate 131, the inner liquid crystal layer control circuit 134, the liquid crystal layer 133, the outer liquid crystal layer control circuit 135, and the outer glass substrate 132, and the adjustable glass cover 130 can also be called an anti-glare glass cover.
[0036] It should be noted that the adjustable glass cover 130 in the embodiments of the present disclosure can be installed in front of the electronic outside rearview mirror camera (the first camera 110). By installing a layer of adjustable glass cover in front of the electronic outside rearview mirror camera, the amount of light entering the camera when the electronic outside rearview mirror camera is irradiated by strong light can be reduced, and the transmittance of the area of the glass cover irradiated by strong light can be reduced. That is, when the electronic outside rearview mirror camera is irradiated by strong light, the amount of light entering the first camera 110 can be adjusted and reduced based on the adjustable glass cover 130.
[0037] In some embodiments, the anti-glare system can further include a glare control module 120 as shown in FIG. 3, and the first camera 110 can be connected with the glare control module 120. Here, the glare control module 120 can be a controller, which can include a brightness processing module 121 and a glass cover control module 122. Among them, the brightness processing module 121 can be a strong light detection processing module, and the brightness processing module 121 can be connected with the first camera 110 and the glass cover control module 122 respectively.
[0038] Specifically, the brightness processing module 121 can analyze the gray scale brightness size, gray scale brightness area size and gray scale transition characteristics of each region of the input image picture, and judge whether there is a strong light irradiation part in the image picture based on the analysis result. If the brightness processing module 121 determines that there is a strong light irradiation part in the image picture, the brightness processing module 121 can transmit the region size and position information of the detected strong light in the image picture to the glass cover control module 122.
[0039] That is, the brightness processing module 121 can perform strong light detection on the image received by it, and when it is determined that there is strong light in the image, the first information corresponding to the strong light in the image can be obtained. The first information can be the region size information and position information of the strong light in the image picture. On this basis, the brightness processing module 121 can send the first information obtained by it to the glass cover control module 122.
[0040] Here, the brightness processing module 121 can be used to read the image picture collected by the electronic outside rearview mirror camera (the first camera 110), and analyze and process the light intensity of any region in the collected picture.
[0041] In some embodiments, the glass cover control module 122 can be used to convert the first information transmitted by the brightness processing module 121 into the second information corresponding to the glass cover. The second information can be the region size and position information of the glass cover corresponding to the strong light. In addition, the glass cover control module 122 can also be used to control the internal circuit of the glass cover to adjust the transmittance of the corresponding position of the glass cover. Here, the glass cover can be an adjustable glass cover 130,
[0042] From the above technical solution, the brightness processing module 121 can detect the brightness of any region in the picture collected by the electronic outside rearview mirror camera, and when it is determined that there is a region with brightness exceeding the set threshold in the collected image picture, the anti-glare system 100 can automatically adjust the glass cover transmittance of the corresponding region through the glare control module 120 until the brightness of the image picture collected by the first camera 110 is lower than the set threshold, at this time the glass cover transmittance can be restored to the default value.
[0043] In the above technical solution proposed by the embodiments of the present disclosure, the anti-glare system includes a first camera, a glare control module and an adjustable glass cover. The first camera is an electronic outside rearview mirror camera, which can be connected with the glare control module to send the images collected to the glare control module. The glare control module can include a brightness processing module and a glass cover control module. The brightness processing module is connected with the first camera and the glass cover control module, and the glass cover control module is connected with the adjustable glass cover. The introduction of the glare control module and the adjustable glass cover can simply and effectively realize the processing of glare, thereby ensuring driving safety.
[0044] FIG. 4 is a block diagram of an anti-glare system according to an exemplary embodiment. As shown in FIG. 4, the anti-glare system 100 can also include a second camera 150 and / or a third camera 160. The glare control module 120 can include a brightness processing module 121 and a glass cover control module 122, and can also include a first camera control module 123, an image processing module 124, a second camera control module 125 and a display screen control module 126.
[0045] Specifically, the first end of the first camera control module 123 can be connected with the first camera 110 (electronic outside rearview mirror camera), and the second end of the first camera control module 123 can be connected with the first end of the brightness processing module 121. Here, the first camera control module 123 can be used to control the first camera 110 to collect images and send the images collected by the first camera 110 to the brightness processing module 121.
[0046] It can be seen that the first camera control module 123 is used to control the first camera 110 to collect image pictures and control the first camera to transmit the collected image pictures to the brightness processing module 121 (intense light detection processing module) and the image processing module 124.
[0047] In some embodiments, the first end of the image processing module 124 can be connected with the third end of the brightness processing module 121, and the image processing module 124 can be configured to receive the image transmitted by the brightness processing module 121. Here, the image processing module 124 can be connected with the brightness processing module 121 and receive the image and detection information transmitted by the brightness processing module 121, and the detection information can include the size and position information of the strong light area in the image.
[0048] Alternatively, the image processing module 124 can be connected with the brightness processing module 121 and the first camera control module 123 respectively, and based on the connection, the image processing module 124 can receive the image collected by the first camera 110 from the first camera control module 123 and receive the first information from the brightness processing module 121, and based on the first information and the image, the size and position information of the strong light area in the image can be obtained.
[0049] Alternatively, the image processing module 124 can be connected with the first camera control module 123, and based on the connection, the image processing module 124 can receive the first image collected by the first camera 110 from the first camera control module 123 and detect whether there is a strong light area in the first image. If there is a strong light area, the image processing module 124 can receive the image from the second camera 150 and / or the third camera 160. At this time, the second camera 150 and / or the third camera 160 can be connected with the image processing module 124.
[0050] Alternatively, the image processing module 124 can also receive the second image from the second camera control module 125 and fuse the first image and the second image, and based on the fusion, the fused image can be displayed on the electronic outside rearview mirror display screen.
[0051] In other embodiments, the first end of the second camera control module 125 can be connected with the third end of the image processing module 124, and the second end of the second camera control module 125 can be connected with the second camera 150 as shown in FIG. 4, and the second camera 150 can be a vehicle side blind area camera.
[0052] At this time, the image processing module 124 can be configured to fuse the first image collected by the first camera 110 and the second image collected by the second camera 150, and during the fusion process, the target image can be obtained based on the first information obtained by the brightness processing module 121. As described above, the first information can be the size information and position information of the strong light area in the image.
[0053] In other embodiments, the second end of the second camera control module 125 can also be connected with the third camera 160 as shown in FIG. 5, and the third camera 160 can be a rearview camera.
[0054] At this time, the image processing module 124 can be used to fuse the first image collected by the first camera 110 and the third image collected by the third camera 160, and in the fusion process, the target image can be obtained based on the first information obtained by the brightness processing module 121.
[0055] In some other embodiments, as shown in FIG. 6, the second end of the second camera control module 125 can be connected with the second camera 150, and the third end of the second camera control module 125 can also be connected with the third camera 160.
[0056] At this time, the image processing module 124 can be used to fuse the first image collected by the first camera 110, the second image collected by the second camera 150, and the third image collected by the third camera 160, and in the fusion process, the target image can be obtained based on the first information obtained by the brightness processing module 121.
[0057] As an optional way, the anti-glare system 100 can also include a display control module 126 and an electronic outside rearview mirror display screen 140. Wherein, the first end of the display screen control module 126 can be connected with the second end of the image processing module 126. The rearview mirror display screen 140 can be connected with the second end of the display screen control module 126.
[0058] As a specific embodiment, the image processing module 124 can fuse the corresponding image part in the image collected by the second camera 150 (vehicle side blind area camera) and the image collected by the third camera 160 (rearview camera), and replace the part of the image collected by the first camera 110 (electronic outside rearview mirror camera) which is too high in brightness and unclear due to strong light irradiation.
[0059] When the anti-glare system 100 detects that the first camera 110 is irradiated by strong light, it can retrieve the image collected by the second camera 150 and the image collected by the third camera 160. For the part of the image collected by the first camera 110 which cannot be clearly identified due to strong light interference, the anti-glare system 100 can retrieve the image at the corresponding position of the image collected by the second camera 150 and the image collected by the third camera 160, and perform image fusion to replace the part of the image in the electronic outside rearview mirror which cannot be clearly identified due to strong light interference.
[0060] From the above technical solution, the anti-glare system 100 can be composed of the first camera 110 (electronic outside rearview mirror camera), the second camera 150 (vehicle side blind area camera), the third camera 160 (rearview camera), the glare control module 120 (controller), the adjustable glass cover 130, and the electronic outside rearview mirror display screen 140. Among them, the glare control module 120 can be composed of a camera control module (the first camera control module 123 and the second camera control module 125), a brightness processing module 121 (a strong light detection processing module), a glass cover control module 122, an image processing module 124, and a display screen control module 126.
[0061] In order to better illustrate the implementation process of the anti-glare function, the present embodiment implements an example diagram as shown in FIG. 7. Based on FIG. 7, it is known that in the process of implementing the anti-glare function, on the one hand, the present embodiment can increase the transmittance adjustable glass cover, reduce the transmittance of the part of the glass cover irradiated by the strong light, and reduce the light intensity entering the first camera 110 when the electronic outside rearview mirror camera is irradiated by the strong light, so as to improve the effect of the electronic outside rearview mirror glare.
[0062] On the other hand, when it is determined that the electronic outside rearview mirror camera is irradiated by the strong light and the collected picture is affected, the present embodiment can synchronously call the images collected by the vehicle side blind area camera and the rearview camera, and fuse the collected images. In the fusion process, the picture of the corresponding area collected by the vehicle side blind area camera and the rearview camera can be used to replace the picture of the area affected by the strong light in the picture collected by the electronic outside rearview mirror camera. On this basis, the target image obtained by fusion is transmitted to the electronic outside rearview mirror display screen, so as to display the target image through the display screen. In this way, the influence of the electronic outside rearview mirror glare can be reduced.
[0063] It can be seen that when the first camera is irradiated by the strong light, the image fusion can be realized by calling the vehicle side blind area camera picture and the rearview camera picture in the present embodiment to avoid the glare. In addition, by installing a layer of transmittance adjustable glass cover 130 in front of the first camera 110, the influence of the glare on the driver can be further reduced. It is known from the above introduction that the adjustable glass cover 130 contains a control circuit (the liquid crystal layer inside control circuit 134 and the liquid crystal layer outside control circuit 135). Based on the control circuit, the control of the deflection of the liquid crystal molecules in the adjustable glass cover 130 can be realized, and then the adjustment of the transmittance of any area of the glass cover can be realized.
[0064] In the embodiments of the present disclosure, the camera (the first camera 110) of the electronic outside rearview mirror can collect the environment information of the left and right positions outside the vehicle body, and then send the collected environment picture outside the vehicle body to the brightness processing module 121 in the glare control module 120. At this time, the brightness processing module 121 can read the input picture information, and analyze the brightness information of each region of the picture based on the read picture information. Specifically, the brightness processing module 121 can analyze the gray scale brightness size, gray scale brightness area and gray scale transition characteristics of each region of the input image picture, and obtain the brightness analysis result of each region of the image picture. On this basis, the brightness processing module 121 can compare the brightness analysis result with the set threshold value, so as to determine whether there is brightness exceeding in the picture. If it is detected that there is brightness exceeding in the picture, the brightness processing module 121 can adjust the light transmittance of the glass cover corresponding to the region of the picture until the brightness of each region of the picture is reduced to within the set threshold value range.
[0065] In addition, when it is detected that there is brightness exceeding in the picture, the anti-glare system 100 can synchronously call the images collected by the second camera 150 and the third camera 160, and replace the picture of the region affected by strong light in the image collected by the first camera 110 with the corresponding region picture of the images collected by the second camera 150 and the third camera 160. After image fusion to obtain a target image, the target image is sent to the electronic outside rearview mirror display screen 140, and the target image is displayed through the electronic outside rearview mirror display screen 140, so that the effect of glare of the electronic outside rearview mirror can be improved.
[0066] It should be noted that if it is detected that there is no brightness exceeding in the image, the brightness processing module 121 can send the image to the display screen control module 126 through the image processing module 124, so as to control the electronic outside rearview mirror display screen 140 to display the image.
[0067] The embodiments of the present disclosure can realize the control of the light intensity of the light irradiated into the camera of the electronic outside rearview mirror from any direction by combining the multi-camera image fusion and the transmittance-adjustable glass cover to adjust the light intensity entering the camera of the electronic outside rearview mirror, so that the light intensity irradiated into the camera of the electronic outside rearview mirror can always be within the set threshold value, so that the automatic anti-glare of the electronic outside rearview mirror can be realized.
[0068] FIG. 8 is an example diagram of a vehicle according to an example embodiment. As shown in FIG. 8, the vehicle 700 can include the anti-glare system 100.
[0069] The anti-glare system 100 can improve the glare problem of the electronic outside rearview mirror when it is irradiated by strong light, that is, it can autonomously detect and adjust the glare degree of the electronic outside rearview mirror. Specifically, an arbitrary area transmittance adjustable glass cover is added outside the first camera, and when the first camera is irradiated by strong light, the images collected by multiple cameras at different positions are fused, and processed by the brightness processing module and the image processing module, so that the automatic detection and adjustment of the light intensity irradiated into the camera can be realized, and the image quality of the part of the image disturbed by strong light can be improved.
[0070] That is, when the anti-glare system detects that the light intensity irradiated into the first camera exceeds the standard, the embodiment of the disclosure can correspondingly reduce the transmittance of the glass cover in the corresponding area, that is, reduce the light intensity entering the camera through the glass cover. At the same time, the embodiment of the disclosure can combine the image fusion of the images collected by multiple cameras to replace the part of the image disturbed by strong light to improve the image quality and reduce the influence of glare.
[0071] Those skilled in the art can also understand that the various illustrative logical blocks listed in the embodiments of the present application can be implemented by electronic hardware, computer software, or a combination of the two. Whether the function is implemented by hardware or software depends on the specific application and the design requirements of the overall system. Those skilled in the art can use various methods to implement the functions described for each specific application, but such implementation should not be understood as beyond the scope of protection of the embodiments of the present application.
[0072] It should be understood that the features of various embodiments of the present disclosure described herein can be combined with each other unless specifically indicated otherwise. As used herein, the term "and / or" includes any of the related listed terms and any combination of any two or more; similarly, "at least one of" includes any of the related listed terms and any combination of any two or more.
[0073] It should be understood that, unless otherwise specifically stated and limited, the terms "engagement", "attachment", "installation", "connection", "connection", "fixing" and the like used in the embodiments of the present disclosure should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected or in communication with each other; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise specifically limited. The specific meaning of the above terms in this paper can be understood by the person skilled in the art according to the specific circumstances.
[0074] Although terms such as "first", "second", and "third" can be used herein to describe various components, parts, regions, layers or sections, these components, parts, regions, layers or sections are not limited to the terms. Instead, the terms are merely used to distinguish one component, part, region, layer or section from another component, part, region, layer or section. Therefore, the first component, part, region, layer or section mentioned in the examples described herein can also be referred to as the second component, part, region, layer or section without departing from the teachings of the examples. In addition, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description herein, the meaning of "a plurality of" is at least two, for example, two, three, etc., unless otherwise specifically limited.
[0075] The preferred embodiments of the present disclosure are described in detail above with reference to the accompanying drawings, but the present disclosure is not limited to the specific details of the above-described embodiments. Within the technical concept of the present disclosure, various simple modifications can be made to the technical solutions of the present disclosure, and these simple modifications all belong to the protection scope of the present disclosure.
[0076] In addition, it should be noted that each specific technical feature described in the above specific embodiments can be combined in any appropriate manner without contradiction. In order to avoid unnecessary repetition, various possible combinations are not described again in the present disclosure.
[0077] In addition, various different embodiments of the present disclosure can also be combined in any appropriate manner without deviating from the idea of the present disclosure, and should be considered as disclosed by the present disclosure.
Claims
1. An anti-glare system, characterized in that, The anti-glare system comprises: a first camera, which is an electronic outside rearview mirror camera; an adjustable glass cover connected with the first camera.
2. The anti-glare system of claim 1, wherein, The adjustable glass cover comprises an inner glass substrate, an outer glass substrate and a liquid crystal layer between the inner glass substrate and the outer glass substrate, and is used for adjusting light transmittance.
3. The anti-glare system of claim 2, wherein, The adjustable glass cover further comprises: an inner liquid crystal layer control circuit arranged between the inner side of the inner glass substrate and the first side of the liquid crystal layer; an outer liquid crystal layer control circuit arranged between the inner side of the outer glass substrate and the second side of the liquid crystal layer.
4. The anti-glare system of claim 3, wherein, The inner liquid crystal layer control circuit comprises a first transparent metal trace, and the outer liquid crystal layer control circuit comprises a second transparent metal trace.
5. The anti-glare system according to any one of claims 1 to 4, characterized in that, The anti-glare system further comprises: a glare control module comprising a brightness processing module and a glass cover control module, wherein the brightness processing module is connected with the first camera and the glass cover control module respectively, and the glass cover control module is connected with the adjustable glass cover.
6. The anti-glare system of claim 5, wherein, The glare control module further comprises: a first camera control module, wherein a first end of the first camera control module is connected with the first camera, a second end of the first camera control module is connected with the brightness processing module, and the first camera control module is used for controlling the first camera to collect images and sending the images collected by the first camera to the brightness processing module.
7. The anti-glare system of claim 6, wherein, The glare control module further comprises: an image processing module, wherein a first end of the image processing module is connected with a third end of the brightness processing module, and the image processing module is used for receiving images transmitted by the brightness processing module; a display screen control module, wherein a first end of the display screen control module is connected with a second end of the image processing module.
8. The anti-glare system of claim 7, wherein, The anti-glare system further comprises: a second camera, which is a vehicle side blind area camera and is connected with the image processing module.
9. The anti-glare system of claim 8, wherein, The glare control module further comprises: a second camera control module, wherein a first end of the second camera control module is connected with a third end of the image processing module, and a second end of the second camera control module is connected with the second camera.
10. The anti-glare system of claim 9, wherein, The anti-glare system further comprises a third camera, which is a rearview camera and is connected with a third end of the second camera control module.
11. The anti-glare system according to any of claims 7-10, characterized in that The anti-glare system further comprises: a rearview mirror display screen connected with a second end of the display screen control module.
12. A vehicle characterized by comprising: The vehicle comprises the anti-glare system according to any one of claims 1 to 11.
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