WO2020147095A1 - Procédé de configuration d'écran et système destiné à un écran d'affichage en mosaïque, et support d'informations non volatil - Google Patents

Procédé de configuration d'écran et système destiné à un écran d'affichage en mosaïque, et support d'informations non volatil Download PDF

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Publication number
WO2020147095A1
WO2020147095A1 PCT/CN2019/072263 CN2019072263W WO2020147095A1 WO 2020147095 A1 WO2020147095 A1 WO 2020147095A1 CN 2019072263 W CN2019072263 W CN 2019072263W WO 2020147095 A1 WO2020147095 A1 WO 2020147095A1
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Prior art keywords
display screen
target display
control device
configuration
parameters
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PCT/CN2019/072263
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English (en)
Chinese (zh)
Inventor
赵星梅
马欣
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西安诺瓦电子科技有限公司
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Priority to PCT/CN2019/072263 priority Critical patent/WO2020147095A1/fr
Publication of WO2020147095A1 publication Critical patent/WO2020147095A1/fr

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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/20Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters
    • G09G3/22Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters using controlled light sources
    • G09G3/30Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters using controlled light sources using electroluminescent panels
    • G09G3/32Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters using controlled light sources using electroluminescent panels semiconductive, e.g. using light-emitting diodes [LED]

Definitions

  • This application relates to the field of display technology, and in particular to a screen configuration method of a spliced display screen, a screen configuration system of a spliced display screen, and a non-volatile storage medium.
  • the current splicing display screen configuration method or system only supports online design mode, the function is relatively single, and the realization process consumes too much manpower, material resources and other resources, which increases the cost. Therefore, there is an urgent need to propose a spliced display screen
  • the screen configuration method and a spliced screen configuration system cooperate with the display control device to realize the intelligent configuration of various complex display screens, so that the display screen always shows a perfect state.
  • the embodiments of the present application provide a screen configuration method for spliced display screens, a screen configuration system for spliced display screens, and a non-volatile storage medium, which can be used with display control equipment to implement various complex display screens
  • the intelligent configuration makes the display display perfect state at all times.
  • the spliced display screen configuration method imports the device parameter file of the target display screen control device; parses the device parameter file to obtain the device of the target display screen control device Parameters; set the splicing unit parameters of the target display screen and the port configuration parameters of the target display control device; generate a screen configuration parameter file according to the device parameters, the splicing unit parameters, and the port configuration parameters; send the configuration
  • the screen parameter file is provided to the target display screen control device to realize the configuration of the target display screen.
  • the method before the step of sending the screen configuration parameter file to the target display screen control device to implement the configuration of the target display screen, the method further includes: judging whether all the parameters are detected The target display screen control device is connected to the target display screen; if it is detected that the target display screen control device is connected to the target display screen, the screen configuration parameter file is matched with the target display screen control device.
  • the method before the step of sending the screen configuration parameter file to the target display screen control device to implement the configuration of the target display screen, the method further includes: if all the parameters are not detected
  • the target display screen control device is connected to the target display screen, and the screen configuration parameter file is derived from the first screen configuration device; the screen configuration parameter file is imported to the target display screen control device connected to the target display The second screen configuration device of the screen; in the second screen configuration device, the screen configuration parameter file is matched with the target display screen control device.
  • the device parameters include the device type of the target display screen control device;
  • the splicing unit parameters include the type of the splicing unit, the number of rows and columns of the splicing unit, and the wiring mode between the splicing units.
  • the port configuration parameter is used to configure the attributes of each port of the target display screen control device connected to the target display screen as a master port or a backup port.
  • the matching the screen configuration parameter file with the target display screen control device includes: according to the target display screen in the device parameters of the target display screen control device
  • the device type of the control device matches the real display screen control device of the same device type, and the matched real display screen control device is used as the target display screen control device.
  • an embodiment of the present application provides a spliced display screen configuration method, which detects whether the first screen configuration device is connected to the target display screen through the target display screen control device; if it is detected that the first screen configuration device passes The target display screen control device is connected to the target display screen to perform an online screen configuration operation; if it is not detected that the first screen configuration device is connected to the target display screen through the target display screen control device, an offline screen configuration is performed Operation; wherein the online screen configuration operation includes: interacting with the target display screen control device to obtain device parameters of the target display screen control device and splicing unit attribute parameters of the target display screen; setting the target The splicing unit configuration parameters of the display screen and the port configuration parameters of the target display screen control device; generate online screen configuration parameters according to the device parameters, the splicing unit attribute parameters, the splicing unit configuration and the port configuration parameters File; and sending the online screen configuration parameter file to the target display screen control device to configure the target display screen; wherein, the offline screen configuration operation includes:
  • the offline screen configuration operation further includes before the step of sending the offline screen configuration parameter file to the target display screen control device to implement configuration of the target display screen : Export the offline screen configuration parameter file from the first screen configuration device; import the offline screen configuration parameter file to a second screen configuration device connected to the target display screen through the target display screen control device; In the second screen configuration device, the target display screen control device is matched with the offline screen configuration parameter file.
  • the device parameters include: the device type of the target display screen control device; in the offline configuration operation, the splicing unit parameters include: the type of the splicing unit, and the type of the splicing unit. The number of rows and columns and the wiring method between splicing units.
  • the splicing unit attribute parameter includes the type of the splicing unit
  • the splicing unit configuration parameter includes the number of rows and columns of the splicing unit and the wiring mode between the splicing units
  • the port configuration parameters are used to configure the attributes of each port of the target display screen control device connected to the target display screen as a master port or a backup port.
  • the matching the target display screen control device with the offline screen configuration parameter file in the second screen configuration device includes: controlling the device according to the target display screen.
  • the device type of the target display screen control device in the device parameters matches a real display screen control device of the same device type, and the matched real display screen control device is used as the target display screen control device.
  • a spliced display screen configuration system includes: a memory and one or more processors connected to the memory, and the memory stores the Instruction, the processor executes the instruction to implement: import the device parameter file of the target display screen control device; parse the device parameter file to obtain the device parameters of the target display screen control device; Splicing unit parameters and port configuration parameters of the target display screen control device; generating a screen configuration parameter file according to the device parameters, the splicing unit parameter, and the port configuration parameter; sending the screen configuration parameter file to the The target display screen control device to realize the configuration of the target display screen.
  • the device parameters include the device type of the target display screen control device;
  • the splicing unit parameters include the type of the splicing unit, the number of rows and columns of the splicing unit, and the wiring mode between the splicing units;
  • the port configuration parameter is used to configure the attributes of each port of the target display screen control device connected to the target display screen as a master port or a backup port.
  • the processor is further configured to implement the following step: in the sending the screen configuration parameter file to the target display screen control device, so as to realize the configuration of the target display screen. Before the step, it also includes: judging whether it is detected that the target display screen control device is connected to the target display screen; if it is detected that the target display screen control device is connected to the target display screen, connecting the screen configuration parameter file with the target display screen. The target display screen controls the device to match.
  • the processor is further configured to implement the following step: in the sending the screen configuration parameter file to the target display screen control device, so as to realize the configuration of the target display screen. Before the step, it further includes: if it is not detected that the target display screen control device is connected to the target display screen, exporting the screen configuration parameter file from the first screen configuration device; and importing the screen configuration parameter file to the The target display screen control device is connected to a second screen configuration device of the target display screen; and the screen configuration parameter file is matched with the target display screen control device in the second screen configuration device.
  • the matching the screen configuration parameter file with the target display screen control device includes: according to the target display screen in the device parameters of the target display screen control device
  • the device type of the control device matches the real display screen control device of the same device type, and the matched real display screen control device is used as the target display screen control device.
  • the matching the screen configuration parameter file with the target display screen control device in the second screen configuration device includes: controlling the device according to the target display screen
  • the device type of the target display screen control device in the device parameters matches a real display screen control device of the same device type, and the matched real display screen control device is used as the target display screen control device.
  • a non-volatile storage medium provided by an embodiment of the present application is used to store a computer-readable program, and the computer-readable program is used for a computer to execute the spliced display as described in any of the foregoing embodiments. How to configure the screen.
  • the above technical solutions may have one or more of the following advantages: the spliced display screen configuration method, the spliced display screen configuration system and non-volatile storage medium provided by the embodiments of the present application provide offline screen configuration operation and Online screen configuration operation Two screen configuration operations can realize simple and fast screen configuration operations, which can reduce the consumption of manpower and material resources, thereby improving user experience.
  • FIG. 1 is a schematic flowchart of a method 100 for configuring a spliced display screen according to an embodiment of the application;
  • FIGS. 2A, 2B, and 2C are schematic flowcharts of a method 200 for configuring a spliced display screen according to another embodiment of the application;
  • FIG. 3 is a schematic structural diagram of a screen matching system 300 of a spliced display screen according to another embodiment of the application;
  • 4 and 5 are schematic diagrams of partial files of a screen configuration parameter file obtained in an embodiment of this application;
  • FIG. 6 is a schematic structural diagram of a non-volatile storage medium 500 according to still another embodiment of the application.
  • a spliced display screen configuration method 100 may include:
  • the target display screen control device is, for example, a display screen controller that contains sending card logic, and the sending card logic includes, for example, a programmable logic device, two network ports, and the programmable logic device and the two channels respectively. Two Ethernet PHY chips between the network ports.
  • the sending card logic includes, for example, a programmable logic device, two network ports, and the programmable logic device and the two channels respectively. Two Ethernet PHY chips between the network ports.
  • device parameter files of other display screen control devices other than the target display screen control device can also be imported. However, in this case, the device type of the target display screen control device needs to be selected later.
  • Step S120 parse the device parameter file to obtain the device parameter of the target display screen control device. Specifically, a deserialization library is used to parse the device parameter file to obtain the device parameter, and display the device parameter.
  • Step S130 Setting the splicing unit parameters of the target display screen and the port configuration parameters of the target display screen control device.
  • the splicing unit parameters include, for example: the type of splicing unit, the number of rows and columns of the splicing unit, and the wiring mode between the splicing units.
  • the splicing unit parameters may also include, for example, the manufacturer of the splicing unit.
  • the port configuration parameters for example, are used to configure the attributes of each port of the target display control device connected to the target display as the master port or the backup port, so as to better ensure the normal display of the display. .
  • the target display screen is, for example, an LED display screen that includes a plurality of splicing units (such as LED display boxes), each of the splicing units includes a plurality of LED light points, and a single splicing unit (LED display box)
  • the body includes, for example, a receiving card (or called a scanning card) and one or more LED light board modules connected to the receiving card.
  • the type of the splicing unit is formed by splicing the name of the receiving card (or scanning card) and the number of rows and columns of the plurality of LED light points included in the splicing unit corresponding to the receiving card, for example.
  • Step S140 Generate a screen configuration parameter file according to the device parameters, the splicing unit parameters, and the port configuration parameters. That is, the screen configuration parameter file includes information such as the device parameters, the splicing unit parameters, and the port configuration parameters.
  • the screen configuration parameter file is, for example, a file in the SRCX format. Further, for example, other files such as a screen design drawing may be generated.
  • the screen design drawing is, for example, a file in PNG format. From the screen design drawing, it can be intuitively seen that the target display screen The wiring relationship between the splicing units is also the connection relationship, so that the construction personnel can intuitively understand the design plan of the designer according to the screen design drawing, which is helpful for screen configuration.
  • Figures 4 and 5 show schematic diagrams of partial files obtained by an embodiment of this application.
  • Step S150 Send the screen configuration parameter file to the target display screen control device to realize the configuration of the target display screen.
  • the spliced display screen configuration method 100 further includes: determining whether it is detected that the target display screen control device is connected to the target display screen; and if it is detected that the target display screen control device is connected to the target display screen; The target display screen matches the screen configuration parameter file with the target display screen control device.
  • the spliced display screen configuration method 100 may, for example, further include: if it is not detected that the target display screen control device is connected to the target display screen, deriving the display from the first screen configuration device Screen configuration parameter file; import the screen configuration parameter file to a second screen configuration device connected to the target display screen through the target display screen control device; and transfer the screen configuration in the second screen configuration device The parameter file is matched with the target display screen control device.
  • the device type of the target display screen control device in the device parameters of the target display screen control device is matched to a real display screen control device of the same device type, and the matched real display screen is controlled
  • the device serves as the target display screen control device, and then can send the screen configuration parameter file to the target display screen control device and the target display screen connected to the target display screen control device with one key, and finally achieve the goal The purpose of the display screen configuration.
  • the first screen configuration device and the second screen configuration device are, for example, desktop computers, notebook computers, and tablet computers, and the first screen configuration device and the second screen configuration device are installed with the same Screen configuration software, for example, the screen configuration software is used to implement the spliced display screen configuration method 100 in an embodiment of the present application, and the screen configuration software is, for example, the SmartLCT screen configuration software of Xi'an Nova Electronic Technology Co., Ltd.
  • the spliced display screen configuration method 100 of an embodiment of the present application may further include, for example, the step of a user selecting whether to open an existing screen configuration parameter file, specifically, the user may choose to open Existing screen configuration parameter file or create a new screen configuration parameter file. If the user chooses to open the existing screen configuration parameter file, the screen configuration method 100 of the spliced display screen will skip steps S110, S120, and S130, and skip directly to step S140 to execute the remaining steps.
  • a spliced display screen configuration method 200 provided by another embodiment of this application may include:
  • Step S210 Detect whether the first screen configuration device is connected to the target display screen through the target display screen control device.
  • the target display screen control device is, for example, a display screen controller that contains sending card logic, and the sending card logic includes, for example, a programmable logic device, two network ports, and the programmable logic device and the two channels respectively. Two Ethernet PHY chips between the network ports.
  • Step S220 If it is detected that the first screen configuration device is connected to the target display screen through the target display screen control device, perform an online screen configuration operation.
  • the offline screen configuration operation may be performed in response to the user's selection.
  • Step S230 If it is not detected that the first screen configuration device is connected to the target display screen through the target display screen control device, perform an offline screen configuration operation.
  • the online screen configuration operation includes, for example:
  • Step S221 Interact with the target display screen control device to obtain device parameters of the target display screen control device and splicing unit attribute parameters of the target display screen.
  • the device parameters include, for example, the device type of the target display screen control device.
  • the device parameters may also include, for example, the number of ports (such as network ports) of the target display screen control device, the type of video source supported by the target display screen control device, and the resolution supported by the target display screen control device. Rate and other parameters.
  • the splicing unit attribute parameter includes, for example, the type of splicing unit.
  • Step S223 Set the splicing unit configuration parameters of the target display screen and the port configuration parameters of the target display screen control device.
  • the configuration parameters of the splicing unit include, for example, the number of rows and columns of the splicing unit and the wiring mode between the splicing units.
  • the port configuration parameters for example, are used to configure the attributes of each port of the target display control device connected to the target display as the master port or the backup port, so as to better ensure the normal display of the display. .
  • the target display screen is, for example, an LED display screen that includes a plurality of splicing units (such as LED display boxes), each of the splicing units includes a plurality of LED light points, and a single splicing unit (such as LED display)
  • the box for example, includes a receiving card (or called a scanning card) and one or more LED light board modules connected to the receiving card.
  • the type of the splicing unit is formed by splicing the name of the receiving card (or scanning card) and the number of rows and columns of the plurality of LED light points included in the splicing unit corresponding to the receiving card, for example.
  • Step S225 Generate an online screen configuration parameter file according to the device parameters, the splicing unit attribute parameters, the splicing unit configuration parameters, and the port configuration parameters. That is, the online screen configuration parameter file includes information such as the device parameters, the splicing unit attribute parameters, the splicing unit configuration parameters, and the port configuration parameters.
  • the online screen configuration parameter file is, for example, a file in the SRCX format. Further, for example, other files such as a screen design drawing may be generated.
  • the screen design drawing is, for example, a file in PNG format.
  • Step S227 Send the online screen configuration parameter file to the target display screen control device to realize the configuration of the target display screen.
  • the online screen configuration operation may, for example, further include: the user selects whether to open an existing online screen configuration parameter file Specifically, the user can choose to open an existing online configuration parameter file or create a new online configuration parameter file. If the user chooses to open an existing online screen configuration parameter file, the online screen configuration process will skip steps S221, S223, and S225, and skip directly to step S227 to execute the remaining steps.
  • the offline screen configuration operation includes, for example:
  • Step S231 Import the device parameter file of the target display screen control device to the first screen configuration device.
  • the device parameter file is, for example, a file in XML format.
  • the method further includes: configuring the device parameters of the target display screen control device into the device parameter file to simulate the real target display screen control device.
  • the device parameters include, for example, the device type of the target display screen control device.
  • the device parameters may also include, for example, the number of ports (such as network ports) of the target display screen control device, the type of video source supported by the target display screen control device, and the resolution supported by the target display screen control device. Rate and other parameters.
  • device parameter files of other display screen control devices other than the target display screen control device can also be imported. However, in this case, the target display screen control device and the number of devices of the target display screen control device need to be selected subsequently.
  • Step S232 parse the device parameter file to obtain the device parameter of the target display screen control device. Specifically, a deserialization library is used to parse the device parameter file to obtain the device parameter, and display the device parameter.
  • Step S233 Set the splicing unit parameters of the target display screen and the port configuration parameters of the target display screen control device.
  • the splicing unit parameters include, for example, the type of the splicing unit, the number of rows and columns of the splicing unit, and the wiring mode between the splicing units.
  • the splicing unit parameters may also include, for example, information such as the manufacturer of the splicing unit.
  • the port configuration parameters for example, are used to configure the attributes of each port of the target display control device connected to the target display as the master port or the backup port, so as to better ensure the normal display of the display. .
  • Step S234 Generate an offline screen configuration parameter file according to the device parameters, the splicing unit parameters and the port configuration parameters. That is, the offline screen configuration parameter file includes information such as the device parameters, the splicing unit parameters, and the port configuration parameters.
  • the offline screen configuration parameter file is, for example, a file in the SRCX format.
  • other files such as a screen design drawing may be generated.
  • the screen design drawing is, for example, a file in PNG format. From the screen design drawing, it can be intuitively seen that the target display screen The wiring relationship between the splicing units is also the connection relationship, so that the construction personnel can intuitively understand the design plan of the designer according to the screen design drawing, which is helpful for screen configuration. as well as
  • Step S235 Send the offline screen configuration parameter file to the target display screen control device to realize the configuration of the target display screen.
  • the method further includes: exporting the offline screen configuration parameter file from the first screen configuration device; and importing the offline screen configuration parameter file to pass the target
  • the display screen control device is connected to the second screen configuration device of the target display screen; and the target display screen control device is matched with the offline screen configuration parameter file in the second screen configuration device.
  • the device type of the target display screen control device in the device parameters of the target display screen control device is matched to a real display screen control device of the same device type, and the matched real display screen is controlled
  • the device can then send the offline screen configuration parameter file to the target display screen control device and the target display screen connected to the target display screen control device with one key, and finally realize the The purpose of the target display screen configuration.
  • the first screen configuration device and the second screen configuration device are, for example, desktop computers, notebook computers, and tablet computers, and the first screen configuration device and the second screen configuration device are installed with the same Screen configuration software, for example, the screen configuration software is used to implement the spliced display screen configuration method 200 in another embodiment of this application, and the screen configuration software is, for example, the SmartLCT screen configuration software of Xi'an Nova Electronic Technology Co., Ltd. .
  • the offline screen configuration process may further include, for example, the step of a user selecting whether to open an existing offline screen configuration parameter file.
  • the user can choose to open an existing offline configuration parameter file or create a new offline configuration parameter file. If the user chooses to open the existing offline screen configuration parameter file, the screen configuration method 100 will skip steps S231, S232, S233, and S234, and skip directly to step S235 to execute the remaining steps.
  • a spliced display screen configuration system 300 provided by another embodiment of this application includes: a screen configuration device 310.
  • the screen configuration device 310 includes a memory 311 and a device connected to the memory 311.
  • the processor 313 executes the instructions to implement the spliced display screen configuration method in the previous embodiment 100.
  • the execution of the instructions by the processor 313 can also be used to implement the screen configuration method 200 of the spliced display screen in another embodiment, except that the screen configuration system 300 of the spliced display screen at this time includes
  • the number of the screen configuration device 310 is two, respectively, the first screen configuration device and the second screen configuration device described in the screen configuration method 200 of the spliced display screen.
  • a non-volatile storage medium 500 provided by yet another embodiment of this application is used to store a computer-readable program, and the computer-readable program is used for a computer to execute as described in the previous embodiment.
  • the foregoing embodiments of the present application provide two screen configuration operations, offline design operations and online design operations, which can implement simple and fast screen configuration operations, reduce the consumption of manpower and material resources, and improve user experience.
  • the offline configuration operation does not need to connect the display control equipment and the display screen, the display screen configuration parameters are designed offline, and the offline configuration parameter file is output.
  • the construction personnel can perform on-site screen configuration according to the offline configuration parameter file.
  • the offline configuration parameter file can be sent to the display screen for configuration with one key.
  • Online screen configuration operation is connected with the display control device and the display screen, and the display screen configuration parameters can be designed online, and the online screen configuration parameter file can be directly sent online to the display screen for configuration.
  • the spliced display screen matching methods 100 and 200, the spliced display screen matching system 300, and the non-volatile storage medium 500 provided by the embodiments of the present application can cooperate with the display control device to achieve various complex displays.
  • the intelligent configuration of the screen makes the display perfect state at all times.
  • the disclosed system, device and/or method may be implemented in other ways.
  • the device embodiments described above are only schematic.
  • the division of the unit/module is only a division of logical functions.
  • there may be another division manner for example, a multi-channel unit or module may The combination can either be integrated into another system, or some features can be ignored, or not implemented.
  • the displayed or discussed mutual coupling or direct coupling or communication connection may be indirect coupling or communication connection through some interfaces, devices or units, and may be in electrical, mechanical, or other forms.
  • the units/modules described as separate components may or may not be physically separated, and the components displayed as units/modules may or may not be physical units, that is, may be located in one place, or may be distributed to multiple channels On the network unit. Some or all of the units/modules may be selected according to actual needs to achieve the objectives of the solutions of the embodiments.
  • each functional unit/module in each embodiment of the present application may be integrated into one processing unit/module, or each unit/module may exist alone physically, or two or more units/modules may be integrated into one Unit/module.
  • the above-mentioned integrated unit/module can be realized in the form of hardware, or can be realized in the form of hardware plus software functional unit/module.
  • the above integrated units/modules implemented in the form of software functional units/modules may be stored in a computer-readable storage medium.
  • the above software functional unit is stored in a storage medium, and includes several instructions to enable one or more processors of a computer device (which may be a personal computer, server, or network device, etc.) to execute the methods described in the embodiments of the present application Part of the steps.
  • the foregoing storage media include: U disk, mobile hard disk, read-only memory (Read-Only Memory, ROM for short), random access memory (Random Access Memory, RAM for short), magnetic disk or optical disc, etc., which can store program codes Medium.

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Abstract

L'invention concerne un procédé de configuration d'écran (100) et un système (300) destiné à un écran d'affichage en mosaïque. Le procédé de configuration d'écran (100) de l'écran d'affichage en mosaïque consiste : à importer le fichier de paramètres de dispositif d'un dispositif de commande d'écran d'affichage cible (S110) ; à analyser le fichier de paramètres de dispositif afin d'obtenir le paramètre de dispositif du dispositif de commande d'écran d'affichage cible (S120) ; à régler le paramètre d'unité de mise en mosaïque d'un écran d'affichage cible et le paramètre de configuration de port du dispositif de commande d'écran d'affichage cible (S130) ; à générer un fichier de paramètres de configuration d'écran en fonction du paramètre de dispositif, du paramètre d'unité de mise en mosaïque et du paramètre de configuration de port (S140) ; et à transmettre le fichier de paramètres de configuration d'écran au dispositif de commande d'écran d'affichage cible afin d'obtenir la configuration de l'écran d'affichage cible (S150).
PCT/CN2019/072263 2019-01-18 2019-01-18 Procédé de configuration d'écran et système destiné à un écran d'affichage en mosaïque, et support d'informations non volatil WO2020147095A1 (fr)

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