Anti-dazzle system and vehicle
By installing an adjustable glass cover and glare control module on the electronic exterior mirror, combined with multi-camera image fusion technology, the glare problem of the electronic exterior mirror when driving at night is solved, and driving safety is improved.
Patent Information
- Application Number
- CN202422399316.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-09-29
AI Technical Summary
Electronic exterior rearview mirrors are easily exposed to incoming cars when driving at night, causing glare, affecting driving safety.
The adjustable glass cover and glare control module are adopted to adjust the light transmittance through the liquid crystal layer, and combined with multi-camera image fusion technology, the images in the bright light area are automatically adjusted and replaced.
Effectively reduce the impact of glare on the driver, ensure driving safety, and improve image quality by automatically adjusting light intensity and image fusion.
Smart Images

Figure CN223085935U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of vehicles, and in particular, to an anti-glare system and a vehicle. Background Art
[0002] An electronic exterior mirror is an electronic mirror system composed of a high-definition camera, an image sensor, an imaging processor, a display screen, etc. Compared with traditional exterior mirrors, electronic exterior mirrors not only conform to aerodynamic design better, but also have a greater improvement in the viewing angle and night tolerance. However, there are also some defects in the use of electronic exterior mirrors. Especially during night driving, when a vehicle coming from behind shines on the electronic exterior mirror, glare problems are likely to occur, which will greatly affect driving safety. Utility Model Content
[0003] In order to overcome the problems existing in the related art, the present disclosure provides an anti-glare system and a vehicle.
[0004] According to the first aspect of the embodiments of the present disclosure, an anti-glare system is provided, and the anti-glare system includes:
[0005] A first camera, and the first camera is an electronic exterior mirror camera;
[0006] An adjustable glass cover, and the adjustable glass cover is connected to the first camera.
[0007] Optionally, the adjustable glass cover includes an inner glass substrate, an outer glass substrate and a liquid crystal layer, the liquid crystal layer is located between the inner glass substrate and the outer glass substrate, and the adjustable glass cover is used to adjust the light transmittance.
[0008] Optionally, the adjustable glass cover further includes:
[0009] A liquid crystal layer inner control circuit, and the liquid crystal layer inner control circuit is arranged between the inner side of the inner glass substrate and the first side of the liquid crystal layer;
[0010] A liquid crystal layer outer control circuit, and the liquid crystal layer outer control circuit is arranged between the inner side of the outer glass substrate and the second side of the liquid crystal layer.
[0011] Optionally, the liquid crystal layer inner control circuit includes a first transparent metal trace, and the liquid crystal layer outer control circuit includes a second transparent metal trace.
[0012] Optionally, the anti-glare system further includes:
[0013] Glare control module, the glare control module includes a brightness processing module and a glass cover control module, the brightness processing module is respectively connected to the first camera and the glass cover control module, and the glass cover control module is connected to the adjustable glass cover.
[0014] Optionally, the glare control module further includes:
[0015] A first camera control module, a first end of the first camera control module is connected to the first camera, a second end of the first camera control module is connected to the brightness processing module, and the first camera control module is configured to control the first camera to collect images and send the images collected by the first camera to the brightness processing module.
[0016] Optionally, the glare control module further includes:
[0017] An image processing module, a first end of the image processing module is connected to a third end of the brightness processing module, and the image processing module is configured to receive the images transmitted by the brightness processing module;
[0018] A display screen control module, a first end of the display screen control module is connected to a second end of the image processing module.
[0019] Optionally, the anti-glare system further includes:
[0020] A second camera, the second camera is connected to the image processing module, and the second camera is a vehicle side blind area camera.
[0021] Optionally, the glare control module further includes:
[0022] A second camera control module, a first end of the second camera control module is connected to a third end of the image processing module, and a second end of the second camera control module is connected to the second camera.
[0023] Optionally, the anti-glare system further includes a third camera, the third camera is a rear view camera, and the third camera is connected to a third end of the second camera control module.
[0024] Optionally, the anti-glare system further includes:
[0025] A rearview mirror display screen, the rearview mirror display screen is connected to a second end of the display screen control module.
[0026] According to a second aspect of the embodiments of the present disclosure, there is provided a vehicle, which includes the anti-glare system according to any one of the first aspect.
[0027] 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. Among them, the first camera is an electronic outside rearview mirror camera, and this first camera can be connected to the adjustable glass cover. By introducing the adjustable glass cover, the embodiments of the present disclosure can simply and effectively achieve the treatment of glare, and thus can ensure driving safety.
[0028] Other features and advantages of the present disclosure will be described in detail in the subsequent specific implementation part. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] The drawings are used to provide a further understanding of the present disclosure, and constitute a part of the specification. Together with the following specific implementation, they are used to explain the present disclosure, but do not constitute a limitation to the present disclosure. In the drawings:
[0030] Figure 1 is a block diagram of an anti-glare system shown according to an exemplary embodiment.
[0031] Figure 2 is a schematic structural diagram of an adjustable glass cover in an anti-glare system shown according to an exemplary embodiment.
[0032] Figure 3 is a block diagram of an anti-glare system including a glare control module shown according to an exemplary embodiment.
[0033] Figure 4 is a block diagram of another anti-glare system shown according to an exemplary embodiment.
[0034] Figure 5 is a block diagram of another anti-glare system including a third camera shown according to an exemplary embodiment.
[0035] Figure 6 is a block diagram of another anti-glare system including a second camera and a third camera shown according to an exemplary embodiment.
[0036] Figure 7 is an example diagram of an anti-glare system implementing a glare function shown according to an exemplary embodiment.
[0037] Figure 8 is a block diagram of a vehicle shown according to an exemplary embodiment.
[0038] DESCRIPTION OF THE REFERENCE NUMERALS
[0039] 100 - Anti-glare system 110 - First camera
[0040] 120 - Glare control module 121 - Brightness processing module
[0041] 122 - Glass cover control module 123 - First camera control module
[0042] 124 - Image processing module 125 - Second camera control module
[0043] 126 - Display screen control module 130 - Adjustable glass cover
[0044] 140 - Electronic outside rearview mirror display screen 150 - Second camera
[0045] 160 - Third camera Detailed implementation manners
[0046] The following will describe in detail the specific implementation manners of the present disclosure with reference to the accompanying drawings. It should be understood that the specific implementation manners described herein are only for explaining and illustrating the present disclosure, and are not used to limit the present disclosure.
[0047] Here, the exemplary embodiments will be described in detail, and the examples are shown in the accompanying drawings. When the following description refers to the accompanying drawings, unless otherwise indicated, the same numerals in different drawings represent the same or similar elements. The implementation manners described in the following exemplary embodiments do not represent all implementation manners consistent with the present disclosure. On the contrary, they are only examples of devices and methods consistent with some aspects of the present disclosure as detailed in the appended claims.
[0048] Here, the exemplary embodiments will be described in detail, and the examples are shown in the accompanying drawings. When the following description refers to the accompanying drawings, unless otherwise indicated, the same numerals in different drawings represent the same or similar elements. The implementation manners described in the following exemplary embodiments do not represent all implementation manners consistent with the present disclosure.
[0049] In the description of the present disclosure, terms such as "first", "second", etc. are used to distinguish similar objects, and do not necessarily need to be understood as a specific order or sequence. Additionally, unless otherwise stated, in the description with reference to the accompanying drawings, the same reference numerals in different drawings represent the same elements.
[0050] The implementation manners described in some embodiments of the present disclosure below do not represent all implementation manners consistent with the present disclosure. On the contrary, they are only examples of devices and methods consistent with some aspects of the present disclosure as detailed in the appended claims.
[0051] During night driving, when a vehicle coming from behind shines on the electronic outside rearview mirror, a glare problem is likely to occur, and this glare problem will greatly affect driving safety. Glare refers to a visual condition in which, due to an inappropriate brightness distribution in the field of view, or an extreme brightness contrast in space or time, visual discomfort is caused and the visibility of objects is reduced.
[0052] To reduce the impact of glare on the driver, an embodiment of the present disclosure proposes an anti-glare system. The anti-glare system may include a first camera and an adjustable glass cover. By means of the adjustable glass cover, the impact of glare on the driver can be simply and effectively reduced, 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 intensity of the light irradiating into the camera of the electronic outside rearview mirror from any direction through the glass cover.
[0053] Figure 1 is a block diagram of an anti-glare system shown according to an exemplary embodiment, as Figure 1 shown, the anti-glare system 100 may include a first camera 110 and an adjustable glass cover 130.
[0054] In an embodiment of the present disclosure, the first camera 110 may be a camera of an electronic outside rearview mirror, and it may be connected to the adjustable glass cover 130.
[0055] In some embodiments, the structure of the adjustable glass cover 130 may be as Figure 2 shown. Based on Figure 2 known, the adjustable glass cover 130 may include an inner glass substrate 131, an outer glass substrate 132, and a liquid crystal layer 133. Among them, the liquid crystal layer 133 may 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.
[0056] Specifically, the liquid crystal layer 133 may include liquid crystal molecules, which have the optical rotation property and can change the propagation direction of light. In addition, the liquid crystal molecules may include charged particles. Under the action of an electric field, the charged particles may change from being uniformly distributed in the liquid crystal molecules to converging towards the two poles of the liquid crystal molecules, so that the two poles of the liquid crystal molecules carry polarity, and the interaction with the external electric field can cause the liquid crystal molecules to deflect at an angle.
[0057] Optionally, the adjustable glass cover may further include an inner liquid crystal layer control circuit 134 and an outer liquid crystal layer control circuit 135. Among them, the inner liquid crystal layer control circuit 131 may be disposed 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 may be disposed between the inner side of the outer glass substrate 132 and the second side of the liquid crystal layer 133.
[0058] In addition, the inner liquid crystal layer control circuit 134 may include a first transparent metal trace (not shown in the figure), and the outer liquid crystal layer control circuit 135 may include a second transparent metal trace (not shown in the figure). Among them, the first transparent metal trace and the second transparent metal trace are arranged oppositely, and the length and width of the first transparent metal trace and the second transparent metal trace are the same.
[0059] In other words, the inner control circuit 134 of the liquid crystal layer and the outer control circuit 135 of the liquid crystal layer can be composed of transparent metal traces, and the metal traces in these two circuits, namely, the inner control circuit 134 of the liquid crystal layer and the outer control circuit 135 of the liquid crystal layer, are of equal length, equal width and are arranged oppositely. In this way, a capacitance can be formed between the trace electrodes of the inner control circuit 134 of the liquid crystal layer and the outer control circuit 135 of the liquid crystal layer.
[0060] Optionally, when voltages with different polarities and intensities are applied to the inner control circuit 134 of the liquid crystal layer and the outer control circuit 135 of the liquid crystal layer, the electric field intensity and direction of the capacitance formed between the trace electrodes of the inner control circuit 134 of the liquid crystal layer and the outer control circuit 135 of the liquid crystal layer can change accordingly, thereby changing the flipping direction of the liquid crystal molecules in the adjustable glass cover 130, causing the propagation direction of the external light to change when passing through the liquid crystal layer 133, and further enabling the adjustment of the light transmittance of different regions of the adjustable glass cover 130.
[0061] In summary, the adjustable glass cover 130 in the embodiments of the present disclosure can be composed of an inner glass substrate 131, an inner control circuit 134 of the liquid crystal layer, a liquid crystal layer 133, an outer control circuit 135 of the liquid crystal layer, and an outer glass substrate 132. This adjustable glass cover 130 can also be referred to as an anti-glare glass cover.
[0062] 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 glass cover with adjustable transmittance 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 further the transmittance of the area of the glass cover irradiated by strong light can be reduced. That is to say, when the electronic outside rearview mirror camera is irradiated by strong light, based on the adjustable glass cover 130, the amount of light entering the first camera 110 can be adjusted and reduced.
[0063] In some embodiments, the anti-glare system may further include a glare control module 120 as Figure 3 shown. The first camera 110 can be connected to the glare control module 120. Here, the glare control module 120 can be a controller, which may 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 and processing module, and the brightness processing module 121 can be respectively connected to the first camera 110 and the glass cover control module 122.
[0064] Specifically, the brightness processing module 121 can analyze the gray-scale brightness level, gray-scale brightness area size, and gray-scale transition characteristics of each area of the input image frame, and determine whether there is a strong light illumination part in the image frame based on the analysis result. If the brightness processing module 121 determines that there is a strong light illumination part in the image frame, the brightness processing module 121 can transmit the detected area size and position information of the strong light in the image frame to the glass cover control module 122.
[0065] That is to say, the brightness processing module 121 can perform strong light detection on the received image, and when it is determined that there is strong light in the image, obtain the first information corresponding to the strong light in the image. The first information can be the area size information and position information of the strong light in the image frame. On this basis, the brightness processing module 121 can send the first information it obtains to the glass cover control module 122.
[0066] Here, the brightness processing module 121 can be used to read the image frame collected by the electronic outside rearview mirror camera (the first camera 110), and analyze and process the light intensity of any area in the collected frame.
[0067] 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 area 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 and adjust the transmittance of the corresponding position of the glass cover. Here, the glass cover can be the adjustable glass cover 130.
[0068] As can be seen from the above technical solutions, the brightness processing module 121 can detect the brightness of any area in the image frame collected by the electronic outside rearview mirror camera. When it is determined that there is an area in the collected image frame where the brightness exceeds the set threshold, the anti-glare system 100 can automatically adjust the transmittance of the corresponding area of the glass cover through the glare control module 120 until the brightness of the image frame collected by the first camera 110 is lower than the set threshold. At this time, the transmittance of the glass cover can be restored to the default value.
[0069] In the above technical solutions proposed in the embodiments of the present disclosure, the anti-glare system includes a first camera, a glare control module, and an adjustable glass cover. Among them, the first camera is an electronic outside rearview mirror camera, and the first camera can be connected to the glare control module to send the image it collects to the glare control module. Here, the glare control module can include a brightness processing module and a glass cover control module. The brightness processing module is respectively connected to the first camera and the glass cover control module, and the glass cover control module is connected to the adjustable glass cover. By introducing the glare control module and the adjustable glass cover, the embodiments of the present disclosure can simply and effectively implement the processing of glare, and thus can ensure driving safety.
[0070] Figure 4 is a block diagram of an anti-glare system shown according to an exemplary embodiment, as Figure 4 shown, the anti-glare system 100 may further include a second camera 150 and / or a third camera 160. In addition to the brightness processing module 121 and the glass cover control module 122, the glare control module 120 may further 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.
[0071] Specifically, a first end of the first camera control module 123 may be connected to the first camera 110 (electronic outside rearview mirror camera), and a second end of the first camera control module 123 may be connected to a first end of the brightness processing module 121. Here, the first camera control module 123 may be configured to control the first camera 110 to capture an image and send the image captured by the first camera 110 to the brightness processing module 121.
[0072] It can be seen that the first camera control module 123 is used to control the first camera 110 to capture an image frame and control the first camera to transmit the captured image frame to the brightness processing module 121 (strong light detection processing module) and the image processing module 124.
[0073] In some embodiments, a first end of the image processing module 124 may be connected to a third end of the brightness processing module 121, and the image processing module 124 may be configured to receive the image transmitted by the brightness processing module 121. Here, the image processing module 124 may be connected to the brightness processing module 121 and receive the image and detection information sent by the brightness processing module 121. The detection information may include the area size and position information of the strong light in the image.
[0074] Optionally, the image processing module 124 may be respectively connected to the brightness processing module 121 and the first camera control module 123. Based on this connection, the image processing module 124 may receive the image captured by the first camera 110 from the first camera control module 123, and may receive the first information from the brightness processing module 121. On this basis, the area size and position information of the strong light in the image may be obtained by combining the first information and the image.
[0075] Optionally, the image processing module 124 may be connected to the first camera control module 123. Based on this connection, the image processing module 124 may receive the first image captured 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, images may be received from the second camera 150 and / or the third camera 160. At this time, the second camera 150 and / or the third camera 160 may be connected to the image processing module 124.
[0076] Optionally, the image processing module 124 may also receive a second image from the second camera control module 125, fuse the first image with the second image, and on this basis, display the fused image through the electronic outside rearview mirror display screen.
[0077] In some other embodiments, the first end of the second camera control module 125 may be connected to the third end of the image processing module 124, and the second end of the second camera control module 125 may be connected to Figure 4 the second camera 150 as shown. The second camera 150 may be a vehicle side blind area camera.
[0078] At this time, the image processing module 124 may be used to fuse the first image captured by the first camera 110 and the second image captured by the second camera 150, and a target image may be obtained based on the first information acquired by the brightness processing module 121 during the fusion process. As known from the above introduction, the first information may be the area size information and position information of the strong light in the image frame.
[0079] In some other embodiments, the second end of the second camera control module 125 may also be connected to Figure 5 the third camera 160 as shown. The third camera 160 may be a rearview camera.
[0080] At this time, the image processing module 124 may be used to fuse the first image captured by the first camera 110 and the third image captured by the third camera 160, and a target image may be obtained based on the first information acquired by the brightness processing module 121 during the fusion process.
[0081] In some other embodiments, as Figure 6 shown, the second end of the second camera control module 125 may be connected to the second camera 150, and the third end of the second camera control module 125 may also be connected to the third camera 160.
[0082] 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 a target image can be obtained based on the first information acquired by the brightness processing module 121 during the fusion process.
[0083] As an alternative, the anti-glare system 100 may further 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 to the second end of the image processing module 126. The rearview mirror display screen 140 can be connected to the second end of the display screen control module 126.
[0084] As a specific implementation, the image processing module 124 can fuse the corresponding image parts in the image frames collected by the second camera 150 (side blind area camera) and the third camera 160 (rearview camera), and use this part of the image to replace the overly bright and unclear part of the image collected by the first camera 110 (electronic outside rearview mirror camera) that is irradiated by strong light.
[0085] When the anti-glare system 100 detects that the first camera 110 is irradiated by strong light, it can retrieve the images collected by the second camera 150 and the third camera 160. For the partial images in the image collected by the first camera 110 that are interfered by strong light and cannot be clearly recognized, the anti-glare system 100 can retrieve the images at the corresponding positions in the images collected by the second camera 150 and the third camera 160, and perform image fusion to replace the images in the electronic outside rearview mirror that are interfered by strong light and cannot be clearly recognized through the fusion.
[0086] As can be seen from the above technical solutions, the anti-glare system 100 can be composed of a first camera 110 (electronic outside rearview mirror camera), a second camera 150 (side blind area camera), a third camera 160 (rearview camera), a glare control module 120 (controller), an adjustable glass cover 130, and an electronic outside rearview mirror display screen 140. Among them, the glare control module 120 can be composed of a camera control module (a first camera control module 123 and a second camera control module 125), a brightness processing module 121 (strong light detection and processing module), a glass cover control module 122, an image processing module 124, and a display screen control module 126, etc.
[0087] To better illustrate the implementation process of the anti-glare function, the present disclosure provides an example diagram as Figure 7 shown, based on Figure 7It is known that in the process of implementing the anti-glare function, on the one hand, the embodiments of the present disclosure can add a glass cover with adjustable transmittance. By adjusting and reducing the transmittance of the glass cover in the part irradiated by strong light, the light intensity entering the first camera 110 when the electronic outside rearview mirror camera is irradiated by strong light can be reduced, so as to improve the anti-glare effect of the electronic outside rearview mirror.
[0088] On the other hand, when it is determined that the electronic outside rearview mirror camera is irradiated by strong light and the captured image is affected, the embodiments of the present disclosure can synchronously retrieve the images captured by the vehicle side blind area camera and the rearview camera, and fuse these captured images. During the fusion process, the corresponding area images captured by the vehicle side blind area camera and the rearview camera can be used to replace the images in the area affected by strong light in the image captured 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, and the target image is displayed through this display screen, so that the influence of the glare of the electronic outside rearview mirror can be reduced.
[0089] It can be seen that when the first camera is irradiated by strong light, in the embodiments of the present disclosure, image fusion can be achieved by retrieving the images of the vehicle side blind area camera and the rearview camera to avoid glare. In addition, by installing a layer of glass cover 130 with adjustable transmittance in front of the first camera 110, the influence of glare on the driver can be further reduced. Through the above introduction, it is known that the adjustable glass cover 130 contains a control circuit (the control circuit 134 inside the liquid crystal layer and the control circuit 135 outside the liquid crystal layer). Based on this control circuit, the deflection of the liquid crystal molecules in the adjustable glass cover 130 can be controlled, and then the transmittance of any area of the glass cover can be adjusted.
[0090] In the embodiments of the present disclosure, the camera of the electronic outside rearview mirror (the first camera 110) can collect the environmental information of the left and right positions outside the vehicle body, and then send the captured external environment image of 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 image information and analyze the brightness information of each area of the image based on the read image 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 area of the input image, and obtain the brightness analysis results of each area in the image. On this basis, the brightness processing module 121 can compare the brightness analysis results with the set threshold to determine whether there is excessive brightness in the image. If it is detected that there is excessive brightness in the image, the brightness processing module 121 can adjust the light transmittance of the glass cover in the corresponding area of the image until the brightness of each area of the image drops within the set threshold range.
[0091] In addition, when it is detected that the brightness in the screen exceeds the standard, the anti-glare system 100 can synchronously retrieve the images collected by the second camera 150 and the third camera 160, and replace the images of the affected areas by strong light in the image collected by the first camera 110 with the corresponding area images of the images collected by the second camera 150 and the third camera 160. After performing image fusion to obtain the 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 glare of the electronic outside rearview mirror can be improved.
[0092] It should be noted that if no brightness exceeding the standard is detected 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 to control the electronic outside rearview mirror display screen 140 to display the image.
[0093] In the embodiment of the present disclosure, by combining multi-camera image fusion and adjusting the light intensity entering the electronic outside rearview mirror camera through the glass cover with adjustable transmittance, the control of the light intensity entering the electronic outside rearview mirror camera from any direction can be realized, so that the light intensity entering the electronic outside rearview mirror camera can always be within the set threshold, and thus the automatic anti-glare of the electronic outside rearview mirror can be realized.
[0094] Figure 8 is an exemplary diagram of a vehicle shown according to an exemplary embodiment, such as Figure 8 shown, the vehicle 700 may include an anti-glare system 100.
[0095] Among them, the anti-glare system 100 can improve the glare problem when the electronic outside rearview mirror is irradiated by strong light, that is, it can autonomously detect and adjust the glare degree of the electronic outside rearview mirror. Specifically, an adjustable transmittance glass cover is added to any area outside the first camera. At the same time, 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 as to realize the automatic detection and adjustment of the light intensity entering the camera, and improve the picture quality of the part of the picture content disturbed by strong light.
[0096] That is to say, when the anti-glare system detects that the light intensity entering the first camera exceeds the standard, the embodiment of the present 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 present disclosure can combine the images collected by multiple cameras for image fusion, replace the part of the image disturbed by strong light, so as to improve the picture quality and thus reduce the influence of glare.
[0097] 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 both. Whether such a function is implemented by hardware or software depends on the specific application and the design requirements of the entire system. Those skilled in the art can use various methods to implement the described function for each specific application, but such implementation should not be construed as exceeding the scope protected by the embodiments of the present application.
[0098] It should be understood that, unless otherwise specifically stated, the features of some embodiments of the various disclosures described herein can be combined with each other. As used herein, the term "and / or" includes any one of the related listed items and any combination of any two or more of them; similarly, "at least one of..." includes any one of the related listed items and any combination of any two or more of them.
[0099] It should be understood that, unless otherwise clearly specified and limited, the terms "joined", "attached", "installed", "connected", "linked", "fixed", etc. used in the embodiments of the present disclosure should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection, an electrical connection, or communicable with each other; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two elements or the interaction relationship between two elements, unless otherwise clearly limited. For those of ordinary skill in the art, the specific meanings of the above terms in this article can be understood according to specific circumstances.
[0100] Although terms such as "first", "second", and "third" may be used herein to describe various components, parts, regions, layers, or sections, these components, parts, regions, layers, or sections are not limited by these terms. On the contrary, these terms are only used to distinguish one component, part, region, layer, or section from another. Therefore, without departing from the teachings of the examples, 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. Additionally, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" can explicitly or implicitly include at least one of such features. In the description herein, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise specifically and clearly defined.
[0101] The preferred embodiments of the present disclosure have been described in detail above in conjunction with the accompanying drawings. However, the present disclosure is not limited to the specific details in the above embodiments. Within the scope of 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 fall within the protection scope of the present disclosure.
[0102] In addition, it should be noted that, in the various specific technical features described in the above specific embodiments, they can be combined in any appropriate manner without conflict. To avoid unnecessary repetition, the present disclosure will not separately describe various possible combination methods.
[0103] Furthermore, any combination can be made between various different embodiments of the present disclosure, as long as it does not violate the idea of the present disclosure, and it should also be regarded as the content disclosed by the present disclosure.
Claims
1. An anti-glare system, characterized in that, The anti-glare system includes: A first camera, which is an electronic outside rearview mirror camera; An adjustable glass cover, which is connected to the first camera.
2. The anti-glare system according to claim 1, characterized in that, The adjustable glass cover includes an inner glass substrate, an outer glass substrate, and a liquid crystal layer. The liquid crystal layer is located between the inner glass substrate and the outer glass substrate, and the adjustable glass cover is used to adjust the light transmittance.
3. The anti-glare system according to claim 2, characterized in that, The adjustable glass cover further includes: A control circuit inside the liquid crystal layer, which is arranged between the inner side of the inner glass substrate and the first side of the liquid crystal layer; A control circuit outside the liquid crystal layer, which is arranged between the inner side of the outer glass substrate and the second side of the liquid crystal layer.
4. The anti-glare system according to claim 3, characterized in that, The control circuit inside the liquid crystal layer includes a first transparent metal trace, and the control circuit outside the liquid crystal layer includes a second transparent metal trace.
5. The anti-glare system according to claim 1, characterized in that, The anti-glare system further includes: A glare control module, which includes a brightness processing module and a glass cover control module. The brightness processing module is respectively connected to the first camera and the glass cover control module, and the glass cover control module is connected to the adjustable glass cover.
6. The anti-glare system according to claim 5, characterized in that The glare control module further includes: A first camera control module, the first end of which is connected to the first camera, and the second end of which is connected to the brightness processing module. The first camera control module is used to control the first camera to collect images and send the images collected by the first camera to the brightness processing module.
7. The anti-glare system according to claim 6, wherein, The glare control module further includes: An image processing module, the first end of which is connected to the third end of the brightness processing module. The image processing module is used to receive the images transmitted by the brightness processing module; A display screen control module, the first end of which is connected to the second end of the image processing module.
8. The anti-glare system according to claim 7, characterized in that The anti-glare system further includes: A second camera, which is connected to the image processing module and is a vehicle side blind area camera.
9. The anti-glare system according to claim 8, characterized in that, The glare control module further includes: A second camera control module, the first end of which is connected to the third end of the image processing module, and the second end of which is connected to the second camera.
10. The anti-glare system according to claim 9, characterized in that, The anti-glare system further includes a third camera, which is a rearview camera and is connected to the third end of the second camera control module.
11. The anti-glare system according to claim 7, characterized in that, The anti-glare system further includes: A rearview mirror display screen, which is connected to the second end of the display screen control module.
12. A vehicle, characterized in that, The vehicle includes the anti-glare system according to any one of claims 1 to 11.