LED movie screen broadcast control system

By designing the LED movie screen broadcast control system, using the mode selection control and image processing unit to adapt to LED display screens of different sizes, the problem of medium and high cost customization in the existing technology is solved, and flexible screen size adjustment and diversified theater operations are achieved.

CN119211501BActive Publication Date: 2025-08-08APPOTRONICS CORP LTD
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Patent Information

Application Number
CN202411488561.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-08-08
Estimated Expiration
2044-10-24

AI Technical Summary

Technical Problem

The existing LED movie screen system needs to be customized according to the needs of different theater sizes in theater operations, resulting in high costs and inconvenience, and it is impossible to achieve flexible screen size adjustment.

Method used

Design an LED movie screen broadcast control system, including mode selection control, data reception module and image processing unit, through mode selection control, different image analysis and configuration instructions are issued, and LED display screens of different sizes are adapted to a system to adapt to multiple screen sizes.

Benefits of technology

It realizes that the screen size can be adjusted according to the needs of the theater without increasing hardware costs, and supports large-size screen disassembly and assembled, synchronous or asynchronous playback, increasing the flexibility and diversity of theater operations.

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Abstract

The present application discloses an LED movie screen broadcast control system, which includes a mode selection control, a data receiving module and an image processing unit. The mode selection control is used to issue different image analysis and configuration instructions according to different needs, and different image analysis and configuration instructions map different image resolutions; the data receiving module is used to receive digital movie data packets; the image processing unit is electrically connected to the mode selection control and the data receiving module, respectively, and is used to perform resolution analysis processing on the video image signal input through the data receiving module according to the image analysis and configuration instructions issued by the mode selection control, so as to generate a video signal that matches the image resolution mapped by the current image analysis and configuration instructions.
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Description

Technical Field

[0001] The present application relates to an LED movie screen, and in particular to a scalable LED movie screen broadcast control system. Background Art

[0002] From projection to LED movie screens, from low brightness to high brightness, from low contrast to high contrast, and from viewing restricted to dark spaces to showing movies with lights on, LED movie screens, labeled "innovative film technology," are revolutionizing the film industry and consumer patterns. Both leading screen companies and cinemas, as well as partners within the industry ecosystem, are eager to experiment and embark on this new journey.

[0003] The movie screen market has long been dominated by projection technology, with the focus of technological competition in this market being projector brightness. The core factor influencing the screen's brightness is the ability to project a large image while maintaining satisfactory image quality. Consequently, movie screens are available in various sizes, including 7m, 10m, and 20m.

[0004] Currently, to meet the needs of different cinemas, LED movie screen systems are typically constructed by splicing small LED unit panels to create screens of varying sizes, such as 7 meters, 10 meters, and 20 meters. Each size of LED movie screen is then operated with its own dedicated broadcast control system. However, commercial needs, such as cinema operations, often necessitate the size of the theater screen to be expanded or reduced to accommodate the changing market. This necessitates customizing the LED movie screen to a new size and simultaneously developing a broadcast control system to accommodate that size.

[0005] For major cinema operators, re-customizing LED movie screen systems of specific sizes will obviously cost more and be more detrimental to the promotion of LED movie screens in the cinema equipment market.

[0006] Therefore, in response to the actual demand that there are many different sizes of theaters and corresponding requirements for the size of LED screens, the applicant has proposed a high-efficiency and low-cost solution. Summary of the Invention

[0007] In order to solve the above problems, the present application proposes a scalable LED movie screen broadcast control system.

[0008] A LED movie screen broadcast control system includes a mode selection control, a data receiving module and an image processing unit, wherein: the mode selection control is used to issue different image analysis and configuration instructions according to different requirements, and different image analysis and configuration instructions map different image resolutions and image processing routing modes; the data receiving module is used to receive digital movie data packets; the image processing unit is electrically connected to the mode selection control and the data receiving module respectively, and is used to perform resolution analysis and distribution processing on the video image signal input through the data receiving module according to the image analysis and configuration instructions issued by the mode selection control, so as to generate a video signal that matches the image resolution mapped by the current image analysis and configuration instructions.

[0009] Optionally, the LED movie screen broadcast control system also includes an LED display screen for displaying the video signal, and the mode selection control issues image analysis and configuration instructions based on the physical intrinsic resolution of the LED display screen, so that the video signal generated by the image processing unit is adapted to the physical intrinsic resolution of the LED display screen.

[0010] Optionally, the mode selection control issues image parsing and configuration instructions corresponding to the physical intrinsic resolution of the LED display screen based on automatic identification of the physical intrinsic resolution of the LED display screen.

[0011] Optionally, the mode selection control issues image parsing and configuration instructions corresponding to the physical intrinsic resolution of the LED display screen based on manual control by the user.

[0012] Optionally, the image processing unit includes an LED video processor module, and the image processing unit performs resolution analysis processing on the video image signal input via the data receiving module through the LED video processing module to generate a video signal that matches the image resolution mapped by the current image analysis and configuration instructions.

[0013] Optionally, the LED movie screen playback control system also includes an LED controller electrically connected to the image processing unit, and the LED controller is used to receive the video signal output by the image processing unit and convert the video signal into a driving signal required by the LED display screen to drive an external LED display screen for movie playback.

[0014] Optionally, the LED controller has multiple data output terminals, and the multiple data output terminals are used to correspond to respective external LED display screens, so as to output the driving signals converted and output by the LED controller to the multiple external LED display screens respectively.

[0015] Optionally, the LED movie screen playback control system also includes multiple LED controllers electrically connected to the image processing unit, and each LED controller is electrically connected to the image processing unit to independently receive the video signal output by the image processing unit and convert the video signal into a driving signal required by an external LED display screen, so as to independently drive the corresponding external LED display screen for movie playback.

[0016] Optionally, the LED movie screen broadcast control system includes a plurality of the data receiving modules, each data receiving module being used to correspond to a different external LED display screen for receiving different digital movie data packets and outputting them to the image processing unit, so that the image processing unit can process and transmit them to the different external LED display screens respectively.

[0017] Optionally, the LED movie screen broadcast control system includes a plurality of mode selection controls corresponding one-to-one to the plurality of data receiving modules, so that the mode selection controls send corresponding image analysis and configuration instruction controls to the image processing unit.

[0018] Optionally, the LED movie screen broadcast control system also includes a tampering protection unit, which includes multiple independent tampering signal input interfaces, each of which is used to establish an electrical signal connection with an external LED display screen, and is used to input a tampering warning signal when data tampering or leakage occurs on the corresponding external LED display screen.

[0019] Optionally, the tamper warning signal type of the tamper protection unit includes binary or CMOS level data.

[0020] Optionally, the tamper protection unit generates and outputs a comprehensive detection result based on the received multiple tamper signal inputs according to control logic or selection signals.

[0021] Optionally, each of the multiple independent tampering signal input interfaces has a unique identification mark. When data tampering or leakage occurs on the LED display screen connected to each tampering signal input interface, the tampering protection unit will be triggered and send a tampering warning signal with an identification mark to the LED movie screen broadcast control system.

[0022] Optionally, each of the tampering signal input interfaces further includes multiple sub-interfaces, each sub-interface corresponding to each LED unit board of the LED display screen connected to the tampering signal input interface to which it belongs, or a display area composed of multiple LED unit boards, so that when data tampering or leakage occurs on the LED display screen connected to a certain tampering signal input interface, the specific local area of the external LED display screen can be accurately located.

[0023] Compared with the existing technology, the above-mentioned LED movie screen broadcast control system provided by this application can issue image analysis and configuration instructions mapping specific image resolutions through the mode selection control according to the needs of different theaters, so as to carry out targeted control of the image processing unit in the image analysis process of the digital movie data packet, thereby achieving the purpose of using a set of broadcast control system to adapt to LED movie screens of various sizes.

[0024] Furthermore, the above-mentioned LED movie screen broadcast control system provided by the present application has at least the following advantages in different application scenarios: on the one hand, it not only provides a method for issuing image analysis and configuration instructions mapping specific image resolutions through the mode selection control according to different theater requirements, so as to carry out targeted control of the image processing unit in the image analysis process of the digital movie data packet, thereby achieving the purpose of using a set of broadcast control system to adapt to LED movie screens of various sizes; on the other hand, when using the above-mentioned LED movie screen broadcast control system provided by the present application, it allows theater operators to freely transform the theater according to actual operational needs, through By disassembling and assembling large-size LED screens, the number of LED screens can be increased from one to many. It is also possible to achieve the effect of receiving a single DCP data and playing it on one LED screen and then being able to play the received single DCP data synchronously or asynchronously on different small-size LED screens. Furthermore, when the system has multiple data receiving modules, it can allow simultaneous reception of multiple DCP data and play different content on multiple LED screens. This allows large-size LED screen theaters to be directly transformed into immersive theaters composed of multiple small-size LED screens without increasing hardware costs, greatly increasing the operating space of theater operators. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0026] Figure 1This is a schematic diagram of the LED movie screen broadcast control system provided in the embodiment of this application.

[0027] Figure 2 yes Figure 1 The following is a schematic diagram of a usage scenario of the LED movie screen playback control system.

[0028] Figure 3 yes Figure 1 The following is a schematic diagram of another usage scenario of the LED movie screen broadcast control system.

[0029] Figure 4 yes Figure 1 The following is a schematic diagram of another usage scenario of the LED movie screen broadcast control system.

[0030] Figure 5 This is a schematic diagram of tamper protection for the LED movie screen broadcast control system provided in the embodiment of the present application. DETAILED DESCRIPTION

[0031] The following embodiments of the technical solution of the present application will be described in detail with reference to the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical solution of the present application and are therefore only examples and are not intended to limit the scope of protection of the present application.

[0032] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this application belongs; the terms used herein are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" and any variations thereof in the specification and claims of this application and the above-mentioned figure descriptions are intended to cover non-exclusive inclusions.

[0033] In the description of the embodiments of this application, the technical terms "first" and "second" are used only to distinguish different objects and should not be understood to indicate or imply relative importance or implicitly specify the quantity, specific order, or primary and secondary relationship of the indicated technical features. In the description of the embodiments of this application, the meaning of "plurality" is more than two, unless otherwise clearly and specifically defined.

[0034] References herein to "embodiments" mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute an independent or alternative embodiment that is mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.

[0035] The advantage of large LED screens is that they can be spliced in unlimited sizes to form LED movie screens of different sizes. From a technical point of view, for LED screens, 7-meter, 10-meter, and 20-meter screens are almost a matter of "expanding the scale of splicing." As for the broadcast control system that goes with the LED screen, a set of LED movie screen broadcast control system can be used to match the complete range of LED movie screen sizes, from a small 7-meter hall to a giant screen of more than 20 meters. Therefore, based on the above ideas, the applicant in this case proposed the following solution.

[0036] See Figure 1 The LED movie screen broadcast control system 100 provided in the embodiment of the present application includes a mode selection control 10, a data receiving module 20, an image processing unit 30 and an LED controller 40.

[0037] The mode selection control 10 is used to issue different image parsing and configuration instructions according to different requirements. Different image parsing and configuration instructions map to different image resolutions and image processing routing modes.

[0038] The data receiving module 20 is used to receive data necessary for film screening, such as digital cinema packages (DCPs) and decryption keys (KDMs), through wired or wireless network channels, optical disks, or mobile storage devices, which are commonly used in cinema systems.

[0039] The image processing unit 30 is electrically connected to the mode selection control 10 and the data receiving module 20, respectively, and is used to unpack, decapsulate, decrypt the content, and decompress the image of the digital movie data packet received by the data receiving module 10. At the same time, according to the image parsing and configuration instructions issued by the mode selection control 10, the video image signal input through the data receiving module 20 is subjected to resolution parsing processing to generate a video signal that matches the image resolution mapped by the current image parsing and configuration instructions, and at the same time, the generated video signal is routed to the corresponding video output channel.

[0040] In this embodiment, the image processing unit 30 includes an LED video processor module. When the image processing unit 30 is in normal working condition, in order to cope with LED screens of different specifications, the LED video processor module processes video data mainly in the following aspects:

[0041] 1. Resolution specification conversion: Generally speaking, the signal resolution provided by the image signal source has fixed specifications (such as 2K / 4K video data stream). The modular splicing display based on the LED display makes its resolution almost any value. Therefore, when the video processor is in working state, it can convert various signal resolutions into the actual physical display resolution of the LED display.

[0042] 2. Color space conversion: The color gamut of LED displays is very wide, while the color space of most image signals is relatively small (such as NTSC). In order for the LED display to have excellent image display effects, color space conversion must be performed.

[0043] 3. Bit depth improvement: With the improvement of fine-pitch LED production technology, the grayscale levels of LED displays with different hardware configurations are also different (such as 10-bit and 12-bit). When the grayscale level of the input signal source is not compatible (such as 8-bit), the application of 10-bit or even 12-bit processing technology in video processors has become a general trend.

[0044] 4. Scaling: During the resolution specification conversion process, the image needs to be scaled. Whether the resolution is increased or decreased, the complete image can be displayed on the screen.

[0045] It should be noted that the data processing capabilities of the above-mentioned LED video processors are all well-known technologies in the field of LED display screens. The LED movie screen broadcast control system 100 provided in this application is based on the data processing capabilities of the LED video processor in the image processing link to achieve the purpose of a broadcast control system that can adapt to LED movie screens of various sizes.

[0046] The LED controller 40 is electrically connected to the image processing unit 30 to receive the video signal outputted therefrom and convert the video signal into a driving signal required by the LED display, such as serial display data and scan control timing, so as to ultimately drive the LED display to play the video.

[0047] It should be noted that in the present application, the LED controller 40 can belong to the LED movie screen broadcast control system 100, or it can belong to the LED movie screen that is compatible with the LED movie screen broadcast control system 100. When the LED controller 40 belongs to the LED movie screen that is compatible with the LED movie screen broadcast control system 100, the LED movie screen broadcast control system 100 only needs to set up a data output channel that is connected to the LED controller 40.

[0048] In this embodiment, based on the logical control between the mode selection control 10 and the image processing unit 30, the LED movie screen broadcast control system can issue image analysis and configuration instructions mapping specific image resolutions through the mode selection control 10 according to different theater requirements, so as to carry out targeted control of the image processing unit 30 in the image analysis process of the digital movie data packet, thereby achieving the purpose of using a set of broadcast control system to adapt to LED movie screens of various sizes.

[0049] In this embodiment, the mode selection control 10 obtains different requirements by automatically identifying the physical intrinsic resolution of the external LED display screen to issue image analysis and configuration instructions corresponding to the physical intrinsic resolution of the LED display screen, or by issuing image analysis and configuration instructions corresponding to a specific image resolution based on manual control of the user.

[0050] The mode selection control 10 can be implemented based on automatic identification of the physical intrinsic resolution of the external LED display screen by any known technology in the field. For example, one implementation method is to detect and read the standard connection data stored in the controller of each LED unit board. Therefore, the standard connection data includes the number of rows and columns of LED lamp beads of each LED unit board. Therefore, by detecting and receiving each standard connection data, the physical intrinsic resolution data of the LED display screen composed of each LED unit board can be generated.

[0051] Based on the working principle of the above-mentioned LED movie screen broadcast control system 100, this application also provides a description of the working scenarios of the LED movie screen broadcast control system 100 when paired with different LED display screens to further highlight the superiority of this application.

[0052] See also Figure 1 When the above-mentioned LED movie screen broadcast control system 100 is adapted to a 20-meter LED screen with a resolution of 4K, the user can select the 4K LED screen projection mode through the mode selection control 10, thereby sending image analysis and configuration instructions to the image processing unit 30. At this time, there are two situations:

[0053] When the input DCP has a 4K resolution, the image data is decoded by the image processing unit 30 and output to the LED controller 40. After that, the LED controller 40 converts the video signal into the serial display data and scan control timing required by the 4K 20-meter LED screen, and finally drives the LED display screen to play the movie.

[0054] When the input DCP has a resolution of 2K or less, the image data is decoded by the image processing unit 30 and the 2K resolution is upgraded to 4K resolution before being output to the LED controller 40. Afterwards, the LED controller 40 converts the video signal into the serial display data and scan control timing required by the 4K 20-meter LED screen, so as to finally drive the LED display screen for movie playback.

[0055] See Figure 2 , which shows that when based on actual needs, it is necessary to Figure 1The 20-meter LED screen with a resolution of 4K is re-spliced. For example, when the 20-meter LED screen with a 4K resolution is re-spliced to form a 10-meter LED screen, the LED movie screen broadcast control system 100 provided in this application can still be well adapted to the 10-meter LED screen.

[0056] When a 20-meter 4K LED screen is split and spliced to form a 10-meter LED screen, since the pixel pitch of each LED module remains unchanged, a 20-meter 4K LED screen can be split and spliced into four 10-meter LED screens with a resolution of 2K. At this time, when the LED movie screen broadcast control system 100 is adapted to one of the 10-meter 2K LED screens, the signal processing process is roughly as follows:

[0057] The user can select the 2K LED screen projection mode through the mode selection control 10, thereby sending image analysis and configuration instructions to the image processing unit 30;

[0058] When the input DCP has a resolution of 4K or 2K, the image data is decoded by the image processing unit 30 and output to the LED controller 40. Thereafter, the LED controller 40 converts the video signal into the serial display data and scan control timing required by the 2K 10-meter LED screen, thereby ultimately driving the LED display screen to play the video.

[0059] When the input DCP has a resolution less than 2K, the image data is decoded by the image processing unit 30 and the resolution is adjusted to 2K before being output to the LED controller 40. Afterwards, the LED controller 40 converts the video signal into the serial display data and scan control timing required by the 2K 10-meter LED large screen, so as to finally drive the LED display screen for movie playback.

[0060] In the above process, Figure 1 The LED movie screen broadcast control system 100 adapted to the 20-meter LED large screen with a resolution of 4K will not undergo any technical changes and can perfectly adapt to the modified 2K 10-meter LED large screen.

[0061] See Figure 3 , still Figure 1 The LED movie screen broadcast control system 100 shown is based on the adaptation of a 20-meter LED screen with a resolution of 4K. Figure 2When a theater with a 4K 20-meter LED screen is converted into four theaters with 2K 10-meter LED screens, or when a theater with a 4K 20-meter LED screen needs to be converted into an immersive theater with four 2K 10-meter LED screens, it is only necessary to split the 4K 20-meter LED screen into four 2K 10-meter LED screens, and then connect the four 2K 10-meter LED screens to the LED movie screen broadcast control system 100. At this time, the signal processing process of the LED movie screen broadcast control system 100 for simultaneous adaptation to the four 2K 10-meter LED screens is roughly as follows:

[0062] The user can select the 2K LED screen projection mode through the mode selection control 10, thereby sending image analysis and configuration instructions to the image processing unit 30. When the input DCP has a 4K or 2K resolution, the image data is decoded by the image processing unit 30 and output to the LED controller 40. Thereafter, the LED controller 40 converts the video signal into the serial display data and scan control timing required by the 2K 10-meter LED large screen, and simultaneously copies the generated control data into four copies, which are sent to the four 2K 10-meter LED large screens respectively, so as to ultimately drive the four 2K 10-meter LED large screens to play the movie simultaneously. At this time, the video content played by the four 2K 10-meter LED large screens is the same.

[0063] When the input DCP has a resolution less than 2K, the image data is decoded by the image processing unit 30 and the resolution is adjusted to 2K before being output to the LED controller 40. Afterwards, the LED controller 40 converts the video signal into the serial display data and scan control timing required by the 2K 10-meter LED large screen, and at the same time copies the formed control data into 4 copies, which are sent to the 4 2K 10-meter LED large screens respectively, so as to finally drive the 4 2K 10-meter LED large screens to play movies at the same time. At this time, the video content played by the 4 2K 10-meter LED large screens is the same.

[0064] In the above process, Figure 1 The LED movie screen broadcast control system 100 adapted to the 20-meter LED screen with a resolution of 4K will not undergo any technical changes and can perfectly adapt to the four modified 2K 10-meter LED screens.

[0065] It should be noted that, in the above process, copying the control data output by the LED controller 40 can be specifically implemented by ensuring that the LED controller 40 has multiple signal output ports at the hardware level.

[0066] That is to say, optionally, in the present application, the LED controller 40 of the LED movie screen broadcast control system 100 may have multiple signal output ports.

[0067] Furthermore, the LED movie screen playback control system 100 may also include a plurality of LED controllers 40, each of which may be electrically connected to the image processing unit 30 to independently receive the video signal output by the image processing unit 30 and convert the video signal into the serial display data and scanning control timing required by the LED display, so as to ultimately independently drive the LED display screens controlled by each of them to play the movie.

[0068] See also Figure 4 ,exist Figure 3 In the usage environment shown, the video content played by the four 2K 10-meter LED screens is the same, which is bound to restrict the operation of the renovated cinema. Therefore, the LED movie screen broadcast control system 100 provided in this application can also include multiple data receiving modules 20, each data receiving module 20 is used to receive different digital movie data packets (DCP), decryption keys (KDM) and other film projection data. In this way, different data receiving modules 20 correspond to different LED screens, so that different effects of video content played by the four 2K 10-meter LED screens can be achieved.

[0069] Of course, in Figure 4 In the usage scenario shown, the mode selection control 10 can also be individually adapted for different data receiving modules 20, for example, Figure 4 In the usage scenario shown, the LED movie screen broadcast control system 100 has four data receiving modules 20. At this time, four mode selection controls 10 can be set to perform one-to-one control with the four data receiving modules 20.

[0070] Please also see Figure 1 and Figure 5Based on the need for tampering protection of digital movie copyrights, the above-mentioned LED movie screen broadcast control system provided by this application also includes a tampering protection unit, which mainly includes a tampering signal multiplexing unit. The tampering signal multiplexing unit includes multiple independent tampering signal input interfaces, and each tampering signal input interface is used to connect an external LED display screen with an electrical signal, and is used to detect whether the corresponding external LED display screen has data tampering or leakage problems. When any external LED display screen has data tampering or leakage problems, the tampering protection unit will be triggered and send a tampering warning signal to the LED movie screen broadcast control system, so that the LED movie screen broadcast control system can timely block the transmission of digital signals according to the tampering warning signal, thereby improving the flexibility of the system, shortening the tampering signal path to achieve faster tampering detection, and simplifying the maintenance process.

[0071] The tampering warning signal type of the tampering signal multiplexing unit may include binary (such as TTL) or CMOS level data, the number of inputs can be configured as needed, and it has a short propagation delay to ensure real-time tampering detection.

[0072] Alternatively, based on the multiple tampering signal input interfaces, the tampering signal multiplexing unit may generate and output a comprehensive detection result from the multiple input signals based on the received multiple tampering signal inputs according to control logic or selection signals.

[0073] Optionally, the multiple independent tampering signal input interfaces of the tampering signal multiplexing unit each have a unique identification mark. When data tampering or leakage occurs on the LED display screen connected to each tampering signal input interface, the tampering protection unit will be triggered and send a tampering warning signal with an identification mark to the LED movie screen broadcast control system, so that when maintaining or replacing the LED display screen, there is no need to interrupt the tampering detection function of the entire system.

[0074] Optionally, given that an LED display screen can be composed of multiple LED unit boards, in order to be able to more accurately determine the signal leakage point, each tampering signal input interface of the tampering signal multiplexing unit can further include multiple sub-interfaces, each sub-interface corresponding to each LED unit board of the LED display screen connected to the tampering signal input interface to which it belongs, or a display area composed of multiple LED unit boards, so that when data tampering or leakage occurs in an LED display screen connected to a certain tampering signal input interface, the specific local area of the external LED display screen can be accurately located, thereby eliminating the need to maintain or replace the entire LED display screen, further reducing costs.

[0075] based on Figures 1 to 4 The changes in usage scenarios shown can fully reflect the superiority of the above-mentioned LED movie screen broadcast control system provided by this application: on the one hand, it not only provides a method that can issue image analysis and configuration instructions mapping specific image resolutions through the mode selection control according to different theater requirements, so as to carry out targeted control of the image processing unit in the image analysis process of the digital movie data packet, thereby achieving the purpose of using a set of broadcast control system to adapt to LED movie screens of various sizes; on the other hand, when using the above-mentioned LED movie screen broadcast control system provided by this application, it allows theater operators to freely transform the theater according to actual operational needs, through The disassembly and assembly of large-size LED screens can achieve the effect of increasing the number of LED screens from one, and can also achieve the effect of receiving a single DCP data and playing it on one LED screen to being able to play the received single DCP data synchronously or asynchronously on different small-size LED screens. Furthermore, when the system has multiple data receiving modules, it can allow simultaneous reception of multiple channels of DCP data and play different content on multiple LED screens, so that without increasing hardware costs, a large-size LED screen theater can be directly transformed into an immersive theater composed of multiple small-size LED screens, greatly increasing the operating space of theater operators.

[0076] The above description is merely an embodiment of the present application and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the present application specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.

Claims

1. An LED movie screen broadcast control system, comprising a mode selection control, a data receiving module, an image processing unit, an LED display screen, and an LED controller, wherein: The mode selection control is used to issue image parsing and configuration instructions based on the physical intrinsic resolution of the LED display screen, and different image parsing and configuration instructions map to different image resolutions and image routing modes; The data receiving module is used to receive digital movie data packets; The image processing unit is electrically connected to the mode selection control, the data receiving module, and the LED controller, respectively. The image processing unit is used to perform resolution analysis and routing distribution processing on the video image signal input through the data receiving module according to the image analysis and configuration instructions issued by the mode selection control, so as to generate a video signal adapted to the physical intrinsic resolution of the LED display screen, and route the generated video signal to the LED controller so that the LED controller converts the video signal into a driving signal required by the LED display screen to drive the external LED display screen to play the movie. The video signal generated by the image processing unit corresponds to the complete image of the digital movie data packet; The LED controller has at least one data output terminal, and each of the data output terminals corresponds to an external LED display screen, so as to route and output the driving signal converted and output by the LED controller to the corresponding external LED display screen. Alternatively, there is at least one LED controller, and the at least one LED controller is electrically connected to the image processing unit to independently receive the video signal routed and output by the image processing unit and convert the video signal into the driving signal required by the external LED display screen, thereby independently driving the corresponding external LED display screen to play the complete movie corresponding to the digital movie data packet.

2. The LED movie screen broadcast control system according to claim 1, characterized in that: The mode selection control issues image parsing and configuration instructions corresponding to the physical intrinsic resolution of the LED display screen based on automatic identification of the physical intrinsic resolution of the LED display screen.

3. The LED movie screen broadcast control system according to claim 1, characterized in that: The mode selection control issues image parsing and configuration instructions corresponding to the physical intrinsic resolution of the LED display screen based on manual control by the user.

4. The LED movie screen broadcast control system according to claim 1, characterized in that: The image processing unit includes an LED video processor module, and the image processing unit performs resolution analysis processing on the video image signal input through the data receiving module through the LED video processing module to generate a video signal that matches the image resolution mapped by the current image analysis and configuration instructions.

5. The LED movie screen broadcast control system according to claim 1, characterized in that: The LED movie screen broadcast control system includes multiple data receiving modules, each of which is used to correspond to a different external LED display screen to receive different digital movie data packets and output them to the image processing unit, so that the image processing unit can process them and transmit them to the different external LED display screens.

6. The LED movie screen broadcast control system according to claim 5, characterized in that: The LED movie screen broadcast control system includes multiple mode selection controls corresponding to multiple data receiving modules, so that the mode selection controls send corresponding image analysis and configuration instruction controls to the image processing unit.

7. The LED movie screen broadcast control system according to claim 1, characterized in that: The LED movie screen broadcast control system also includes a tampering protection unit, which includes multiple independent tampering signal input interfaces. Each tampering signal input interface is used to establish an electrical signal connection with an external LED display screen, and is used to input a tampering warning signal when data tampering or leakage occurs on the corresponding external LED display screen.

8. The LED movie screen broadcast control system according to claim 7, characterized in that: The tamper warning signal type of the tamper protection unit includes binary or CMOS level data.

9. The LED movie screen broadcast control system according to claim 7, characterized in that: The tamper protection unit generates and outputs a comprehensive detection result based on the received multiple tamper signal inputs according to control logic or selection signals.

10. The LED movie screen broadcast control system according to claim 7, characterized in that: Each of the multiple independent tampering signal input interfaces has a unique identification mark. When data tampering or leakage occurs on the LED display screen connected to each tampering signal input interface, the tampering protection unit will be triggered and send a tampering warning signal with an identification mark to the LED movie screen broadcast control system.

11. The LED movie screen broadcast control system according to claim 7, characterized in that: Each of the tampering signal input interfaces further includes multiple sub-interfaces, each sub-interface corresponding to each LED unit board of the LED display screen connected to the tampering signal input interface to which it belongs, or a display area composed of multiple LED unit boards, so that when data tampering or leakage occurs on the LED display screen connected to a certain tampering signal input interface, the specific local area of the external LED display screen can be accurately located.

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