CN112584206A - Courseware display method, system, device and storage medium - Google Patents

Courseware display method, system, device and storage medium Download PDF

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Publication number
CN112584206A
CN112584206A CN201910941704.1A CN201910941704A CN112584206A CN 112584206 A CN112584206 A CN 112584206A CN 201910941704 A CN201910941704 A CN 201910941704A CN 112584206 A CN112584206 A CN 112584206A
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China
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video signal
main
signal
controller
courseware
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CN201910941704.1A
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Chinese (zh)
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CN112584206B (en
Inventor
陈俊伟
张超
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Guangzhou Shiyuan Electronics Thecnology Co Ltd
Guangzhou Shirui Electronics Co Ltd
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Guangzhou Shiyuan Electronics Thecnology Co Ltd
Guangzhou Shirui Electronics Co Ltd
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Priority to CN201910941704.1A priority Critical patent/CN112584206B/en
Publication of CN112584206A publication Critical patent/CN112584206A/en
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/41Structure of client; Structure of client peripherals
    • H04N21/4104Peripherals receiving signals from specially adapted client devices
    • H04N21/4122Peripherals receiving signals from specially adapted client devices additional display device, e.g. video projector
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/436Interfacing a local distribution network, e.g. communicating with another STB or one or more peripheral devices inside the home
    • H04N21/4363Adapting the video or multiplex stream to a specific local network, e.g. a IEEE 1394 or Bluetooth® network
    • H04N21/43632Adapting the video or multiplex stream to a specific local network, e.g. a IEEE 1394 or Bluetooth® network involving a wired protocol, e.g. IEEE 1394
    • H04N21/43635HDMI
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/44Processing of video elementary streams, e.g. splicing a video clip retrieved from local storage with an incoming video stream, rendering scenes according to MPEG-4 scene graphs
    • H04N21/4402Processing of video elementary streams, e.g. splicing a video clip retrieved from local storage with an incoming video stream, rendering scenes according to MPEG-4 scene graphs involving reformatting operations of video signals for household redistribution, storage or real-time display
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/44Processing of video elementary streams, e.g. splicing a video clip retrieved from local storage with an incoming video stream, rendering scenes according to MPEG-4 scene graphs
    • H04N21/4402Processing of video elementary streams, e.g. splicing a video clip retrieved from local storage with an incoming video stream, rendering scenes according to MPEG-4 scene graphs involving reformatting operations of video signals for household redistribution, storage or real-time display
    • H04N21/440218Processing of video elementary streams, e.g. splicing a video clip retrieved from local storage with an incoming video stream, rendering scenes according to MPEG-4 scene graphs involving reformatting operations of video signals for household redistribution, storage or real-time display by transcoding between formats or standards, e.g. from MPEG-2 to MPEG-4
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/47End-user applications
    • H04N21/472End-user interface for requesting content, additional data or services; End-user interface for interacting with content, e.g. for content reservation or setting reminders, for requesting event notification, for manipulating displayed content
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N5/00Details of television systems
    • H04N5/222Studio circuitry; Studio devices; Studio equipment
    • H04N5/262Studio circuits, e.g. for mixing, switching-over, change of character of image, other special effects ; Cameras specially adapted for the electronic generation of special effects
    • H04N5/268Signal distribution or switching
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N5/00Details of television systems
    • H04N5/76Television signal recording
    • H04N5/765Interface circuits between an apparatus for recording and another apparatus

Abstract

The embodiment of the invention discloses a courseware display method, a courseware display system, courseware display equipment and a storage medium, wherein the method comprises the following steps: the controller courseware generates a first main video signal and transmits the first main video signal to the main display controller; the main display controller generates a first sub video signal based on the first main video signal, reports the first sub video signal to the main screen through the signal converter for playing, and is also used for transmitting the first main video signal converted according to the first sub video signal to the signal switcher; the main display controller transmits the first enabling signal to the signal switcher to control the signal switcher to transmit the first main video signal to the auxiliary display controller, and the auxiliary display controller is used for transmitting the first sub video signal converted according to the first main video signal to the auxiliary screen to be played. The controller manages courseware, and the courseware can be displayed by displaying the first sub video signal, so that the real-time performance of courseware display of the main display device and the auxiliary display device is guaranteed, and the time delay of courseware display is reduced.

Description

Courseware display method, system, device and storage medium
Technical Field
The embodiment of the invention relates to the technology of education, in particular to a courseware display method, a courseware display system, courseware display equipment and a storage medium.
Background
In some classrooms, a machine is used as a multimedia device in conjunction with a blackboard for teaching.
However, one machine has a limited screen size, and in a scene where a larger screen is required to display teaching contents, some classrooms use two machines placed side by side to extend the display area.
The two machines are only spliced together physically, the two machines still work independently and independently to display courseware independently, the two machines need to communicate with the courseware frequently to ensure synchronous display of the courseware, and the operation is complex, so that the two machines display the courseware with time delay.
Disclosure of Invention
The embodiment of the invention provides a courseware display method, a courseware display system, courseware display equipment and a storage medium, and aims to solve the problem that two machines independently display courseware and delay exists.
In a first aspect, an embodiment of the present invention provides a courseware display method, where a main display device is connected to a secondary display device, and the main display device is provided with a controller, a main display controller, a signal switcher, a signal converter, and a main screen; the auxiliary display device is provided with an auxiliary display controller and an auxiliary screen; the method comprises the following steps:
the controller determines courseware and generates a first main video signal according to the courseware;
the controller transmits the first main video signal to the main display controller;
the main display controller generates a first sub video signal based on the first main video signal, wherein the first sub video signal is a screen driving signal matched with the main screen;
the main display controller transmits the first sub video signal to the signal converter, and the signal converter is used for transmitting the first sub video signal to a main screen for playing; converting the first divided video signal into the first main video signal, and transmitting the first main video signal to the signal switcher;
the main display controller transmits a first enabling signal to the signal switcher to control the signal switcher to transmit the first main video signal to the auxiliary display controller, and the auxiliary display controller is used for converting the first main video signal into a first sub video signal and transmitting the first sub video signal to the auxiliary screen for playing.
In a second aspect, an embodiment of the present invention further provides a main display device, where the main display device is connected to a secondary display device, and a controller, a main display controller, a signal switcher, a signal converter, and a main screen are disposed in the main display device; the auxiliary display device is provided with an auxiliary display controller and an auxiliary screen;
the controller is configured to:
determining courseware, and generating a first main video signal according to the courseware;
transmitting the first main video signal to the main display controller;
the main display controller is used for:
generating a first sub video signal based on the first main video signal, wherein the first sub video signal is a screen driving signal matched with the main screen;
transmitting the first component video signal to the signal converter, wherein the signal converter is used for transmitting the first component video signal to a main screen for playing;
converting the first divided video signal into the first main video signal, and transmitting the first main video signal to the signal switcher; and transmitting a first enabling signal to the signal switcher so as to control the signal switcher to transmit the first main video signal to the auxiliary display controller, wherein the auxiliary display controller is used for converting the first main video signal into a first sub video signal and transmitting the first sub video signal to the auxiliary screen for playing.
In a third aspect, an embodiment of the present invention further provides a courseware display system,
the system comprises a main display device and an auxiliary display device which are connected, wherein the main display device is internally provided with a controller, a main display controller, a signal switcher, a signal converter and a main screen; the auxiliary display device is provided with an auxiliary display controller and an auxiliary screen;
the controller is configured to:
determining courseware, and generating a first main video signal according to the courseware;
transmitting the first main video signal to the main display controller;
the main display controller is used for:
generating a first sub video signal based on the first main video signal, wherein the first sub video signal is a screen driving signal matched with the main screen;
transmitting the first component video signal to the signal converter, wherein the signal converter is used for transmitting the first component video signal to a main screen for playing; converting the first divided video signal into the first main video signal, and transmitting the first main video signal to the signal switcher;
transmitting a first enable signal to the signal switcher to control the signal switcher to transmit the first main video signal to the secondary display controller;
the auxiliary display controller is used for:
and converting the first main video signal into a first sub video signal, and transmitting the first sub video signal to the auxiliary screen for playing.
In a fourth aspect, an embodiment of the present invention further provides a computer device, where the computer device includes:
one or more processors;
a memory for storing one or more programs;
when executed by the one or more processors, cause the one or more processors to implement a method of displaying courseware as described in the first aspect.
In a fifth aspect, an embodiment of the present invention further provides a computer-readable storage medium, on which a computer program is stored, where the computer program, when executed by a processor, implements the courseware display method according to the first aspect.
In the embodiment, the controller determines a courseware and generates a first main video signal according to the courseware; the controller transmits the first main video signal to the main display controller; the main display controller generates a first sub video signal based on the first main video signal, wherein the first sub video signal is a screen driving signal matched with the main screen; the main display controller transmits the first sub video signal to the signal converter, and the signal converter is used for transmitting the first sub video signal to the main screen for playing; the video signal switcher is used for converting the first sub video signal into a first main video signal and transmitting the external video signal to the signal switcher; the main display controller transmits the first enabling signal to the signal switcher, the first main video signal is transmitted to the auxiliary display controller by the control signal switcher, the auxiliary display controller is used for converting the first main video signal into a first sub video signal, the first sub video signal is transmitted to the auxiliary screen to be played, courseware is are uniformly managed by the controller, the main display controller and the auxiliary display controller do not need to communicate frequently with the courseware, simplicity of operation is greatly improved, the first sub video signal is displayed, the courseware can be displayed, real-time performance of displaying the courseware by the main display device and the auxiliary display device is guaranteed, and time delay of displaying the courseware is reduced.
Drawings
Fig. 1 is a schematic structural diagram of a main display device and an auxiliary display device according to an embodiment of the present invention;
fig. 2 is a flowchart of a courseware display method according to an embodiment of the present invention;
fig. 3 is a flowchart of a courseware display method according to a second embodiment of the present invention;
fig. 4 is a flowchart of a courseware display method according to a third embodiment of the present invention;
fig. 5 is a schematic structural diagram of a main display device according to a fourth embodiment of the present invention;
fig. 6 is a schematic structural diagram of a courseware display system according to a fifth embodiment of the present invention;
fig. 7 is a schematic structural diagram of a computer device according to a sixth embodiment of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples. It is to be understood that the specific embodiments described herein are merely illustrative of the invention and are not limiting of the invention. It should be further noted that, for the convenience of description, only some of the structures related to the present invention are shown in the drawings, not all of the structures.
Fig. 1 is a schematic structural diagram of a main display device and an auxiliary display device according to an embodiment of the present invention.
In the present embodiment, the main display device 10 has a data port, the sub display device 20 has a data port, and a data line is accessible between the data port of the main display device 10 and the data port of the sub display device 20, so as to connect the main display device 10 and the sub display device 20.
The data port of the primary display device 10 and the data port of the secondary display device 20 may be set with various types of pins such as a video pin, a data pin, a network pin, etc. according to service requirements.
In which, the video pins may be used to transmit video signals, and with an HDMI (High Definition Multimedia Interface) signal as an example of a video signal, a pair of video pins may be used to transmit an HDMI clock signal, a pair of video signals may be used to transmit an HDMI red signal, a pair of video signals may be used to transmit an HDMI green signal, and a pair of video signals may be used to transmit an HDMI blue signal.
The data pins may be used to transmit Serial signals, such as USB (Universal Serial BUS) 3.0 signals, USB2.0 signals, including signals of camera, MIC (microphone), TOUCH up (TOUCH operation), and the like.
Network pins may be used to transmit network signals, such as gigabit network signals, for network communications.
In general, as shown in fig. 1, the main display device 10 may specifically include the following structure: the controller 110, the main display controller 120 that can convert a video signal into a screen driving signal, the signal converter 130 that can convert a screen driving signal into a video signal, the signal switch 140, the main screen 150, and the like.
The controller 110 belongs to a higher performance computing module.
For example, the controller 110 may be an Android module, that is, an Android system may be installed, and components such as a CPU (Central Processing Unit), a GPU (Graphics Processing Unit), a RAM (random access Memory), a ROM (Read-Only Memory), and the like are configured, for example, for the Android7.0 version, the CPU is a dual-core a72 and a quad-core a53, the GPU is a Mali T860, the RAM is 4GB, the ROM is 32GB, and the like.
For another example, the controller 110 may be a PC (personal computer) module configured with components such as a CPU, a GPU, a memory, and a hard disk, for example, for a plug-in Intel Core series modular computer, the CPU is Intel Core i5/i7, the GPU is kernel HD Graphics, the memory is DDR 48G/16G, and the hard disk is 128G/256G.
The main Display controller 120 belongs to Display Controllers (Display Controllers), and has a low operation performance, such as 811SOC (System on Chip), and is responsible for receiving video signals from a serial port of a computer, placing the video signals into a frame memory, and generating serial Display data and a scanning control timing sequence, i.e., a screen driving signal, required by a screen in a partition driving manner. Illustratively, the video signal is a High Definition Multimedia Interface (HDMI) signal, and the screen driving signal is a video serial Interface (V-By-One, VBO) signal or a Low Voltage Differential Signaling (LVDS) signal. The VBO signal has an advantage that a Clock (CLK) is superimposed on an original data signal of the video signal and transmitted in a common mode. Compared with HDMI signals, the method can omit CLK signal lines, and has low requirements on transmission wires due to the fact that the transmission distance is shorter, and the common five-type wires are enough. The LVDS interface performs data transmission by differential, i.e., low voltage differential signal transmission, on two printed circuit board traces or a pair of balanced cables with a very low voltage swing (about 350 mV). By adopting the LVDS interface, signals can be transmitted on a differential printed circuit board or a balanced cable at the speed of hundreds of Mbit/s, and low noise and low power consumption are realized due to the adoption of a low-voltage and low-current driving mode. Generally, a display screen controller is internally provided with circuit logic for converting a video signal into a screen driving signal.
By using the cooperation between the controller 110 and the main display controller 120, the signal processing with high requirement on the operation performance, such as the annotation function, can be configured on the controller 110 with higher operation performance. Moreover, the cost of modifying the main display controller 120 itself is not increased.
Further, the master display controller 120 is provided with a first video input port 121, a second video input port 122, a signal control port 123, and a master video output port 124.
The first video input port 121 is used for connecting with an electronic device to input a video signal, wherein the video signal is from the electronic device 30. Illustratively, the video signal of the electronic device 30 may comprise a graphical user interface of the electronic device 30. The electronic device 30 may be a mobile phone, a computer, a tablet, a screen transmission device, or other terminals.
The second video input port 122 is connected to the controller 110 for inputting video signals from the controller 110. Illustratively, the video signal of the controller 110 may include a graphical user interface of an operating system running on top of the controller 110.
The first video input port 121 may expose the housing of the main display device 10, serve as a pin in the data port, connect with the electronic device 30, and input a video signal of the electronic device 30 to the main display device 10.
The signal converter 130 belongs to a converter, and can receive a driving signal, and convert the driving signal into a first signal and a second signal for outputting, where the first signal is a video signal, and the second signal is a screen driving signal. For the main display device shown in fig. 1, the signal converter 130 has an input port 131, a first output port 132, and a second output port 133, as shown in fig. 1.
The input port 131 is connected to the main video output port 124 for inputting a screen driving signal.
The first output port 132 is used for outputting a video signal.
The second output port 133 is connected to the main screen 150 for outputting a screen driving signal.
That is, specifically, the signal converter 130 is configured to convert the screen driving signal input to the input port 131 into a first signal and a second signal, where the first signal is a video signal and the second signal is a screen driving signal, and the first signal and the second signal are output from the first output port 132 and the second output port 133, respectively.
The signal switch 140 belongs to a switch (switch), and can receive at least two video signals, which can be HDMI signals, and output one of the video signals. For the main display apparatus shown in fig. 1, as shown in fig. 1, the signal switcher 140 includes a first signal input port 141, a second signal input port 142, a signal output port 143, and a control port 144.
The first signal input port 141 is connected to the first output port 132 for inputting a video signal from the video signal of the signal converter 130; the video signal of the signal converter 130 is converted from the screen driving signal output by the main display controller 120; the screen driving signal outputted by the main display controller 120 may be converted by the main display controller 120 according to the video signal inputted from the electronic device 30, or the screen driving signal outputted by the main display controller 120 may be converted by the main display controller 120 according to the video signal inputted from the controller 110, and the main display controller 120 may select the screen driving signal.
The second signal input port 142 is connected to the controller 110 for inputting a video signal from the controller 110.
The control port 144 is connected to the signal control port 123 for receiving an enable signal.
The signal output port 143 is configured to output a video signal when the control port 144 receives the enable signal.
The signal output port 143 may expose the housing of the main display device 10, serve as a pin in the data port, be connected to the sub display device 20, and input the video signal output by the controller 110 or output by the signal converter 130 to the sub display device 20.
For example, when the main display 120 transmits a low-level signal as an enable signal to the signal switch 140, the signal switch 140 outputs a video signal transmitted by the signal converter 130.
When the main display controller 120 transmits the high-level signal as an enable signal to the signal switch 140, the signal switch 140 outputs the video signal transmitted by the controller 110.
In particular, the enable signal may include a first enable signal and a second enable signal. When the control port 144 of the signal switch 140 receives a first enable signal, such as a low-level signal, the signal output port 143 outputs a video signal from the first signal input port 141; when the control port 144 of the signal switch 140 receives a second enable signal, such as a high-level signal, the signal output port 143 outputs the video signal from the second signal input port 142.
That is, it is possible to control which video signal is output by inputting an enable signal to the control port 144 of the signal switch 140. It should be noted that, among others, the video signal of the first signal input port 141, the video signal from the signal converter 130; the video signal of the signal converter 130 is converted from the screen driving signal output by the main display controller 120; the driving signal outputted from the master 120 is converted from the master 120 according to the video signal inputted from the electronic device 30, or the master 120 is converted from the video signal inputted from the controller 110. That is, when the control port 144 of the signal switch 140 receives the first enable signal, it may achieve an effect of outputting the video signal of the electronic device 30 or the video signal of the controller 110 to another display device, such as the sub-display device 20.
As shown in fig. 1, the secondary display device 20 may include a secondary display 210 that may convert a video signal into a screen driving signal, and a secondary screen 220. The sub display controller 210 is connected to the data interface of the main display device 10, and is configured to input a video signal; the sub screen 220 is connected to the sub display controller 210, and is used for inputting a screen driving signal.
The sub Display controller 210 belongs to Display Controllers (Display Controllers), has low operation performance, such as 811SOC, and is responsible for receiving video signals from a serial port of a computer, placing the video signals into a frame memory, and generating serial Display data and a scanning control timing sequence, i.e., a screen driving signal, required by a screen in a partition driving manner. Illustratively, the video signal is a High Definition Multimedia Interface (HDMI) signal, and the screen driving signal is a video serial Interface (V-By-One, VBO) signal or a Low Voltage Differential Signaling (LVDS) signal. The VBO signal has an advantage that a Clock (CLK) is superimposed on an original data signal of the video signal and transmitted in a common mode. Compared with HDMI signals, the method can omit CLK signal lines, and has low requirements on transmission wires due to the fact that the transmission distance is shorter, and the common five-type wires are enough. The LVDS interface performs data transmission by differential, i.e., low voltage differential signal transmission, on two printed circuit board traces or a pair of balanced cables with a very low voltage swing (about 350 mV). By adopting the LVDS interface, signals can be transmitted on a differential printed circuit board or a balanced cable at the speed of hundreds of Mbit/s, and low noise and low power consumption are realized due to the adoption of a low-voltage and low-current driving mode. Generally, a display screen controller is internally provided with circuit logic for converting a video signal into a screen driving signal.
The hardware part of the intelligent interactive flat panel is composed of a screen (such as a main screen and a secondary screen), an intelligent processing system (including display controllers (such as a main display controller and a secondary display controller), or a controller and a display controller (such as a main display controller and a secondary display controller)), and the like, and is combined together by an integral structural member and is also supported by a special software system, wherein the screen comprises a display screen and a backlight assembly, and the display screen comprises a transparent electric conduction layer, a liquid crystal layer and the like.
The display screen, in the embodiments of the present specification, refers to a touch screen, and a touch panel, and is an inductive liquid crystal display device, when a graphical button on the screen is touched, the tactile feedback system on the screen can drive various connection devices according to a pre-programmed program, so as to replace a mechanical button panel, and create a vivid video effect by using a liquid crystal display screen. Touch screens are distinguished from technical principles and can be divided into five basic categories; a vector pressure sensing technology touch screen, a resistance technology touch screen, a capacitance technology touch screen, an infrared technology touch screen, and a surface acoustic wave technology touch screen. According to the working principle of the touch screen and the medium for transmitting information, the touch screen can be divided into four categories: resistive, capacitive, infrared, and surface acoustic wave.
When a user touches the screen with a finger or a pen, the point coordinates are positioned, so that the control of the intelligent processing system is realized, and then different functional applications are realized along with the built-in software of the intelligent processing system.
The screen and the large screen mentioned in the embodiment of the invention both refer to the display screen of the intelligent interactive flat panel; the intelligent interaction panel displays data such as a certain interface and annotation information, and the data refers to the data such as the interface and the annotation information displayed on a display screen of the intelligent interaction panel.
Further, the main display device 10 may further include: a routing module (not shown) that can receive an access signal when the first video input port 121 receives a video signal.
The routing module includes: a first network port (not shown), and a second network port (not shown).
The first network port is connected to the main display controller 120, and is configured to input an access signal, where the access signal is generated when the main display controller 120 detects that the electronic device 30 is accessed, and is sent to the routing module.
The second network port is connected to the slave display controller 210 for outputting an access signal. Further, the sub display controller 210 may convert the video signal received from the main display device 10 into a driving signal according to the access signal, and send the driving signal to the sub screen 220, so as to drive the sub screen 220 to display the video signal corresponding to the driving signal.
Example one
Fig. 2 is a flowchart of a courseware display method according to an embodiment of the present invention, where the present embodiment is applicable to a case where a controller of a main display device controls a main screen and a sub-screen to display courseware, and the method may be executed by the main display device and the sub-display device, the main display device is connected to the sub-display device, and the main display device and the sub-display device may be implemented by software and/or hardware, where the main display device is provided with the controller, a main display controller, a signal switcher, a signal converter, and the main screen; the method specifically comprises the following steps:
s201, the controller determines courseware and generates a first main video signal according to the courseware.
In this embodiment, the user may set the display of the controller to "copy the desktops of the main display device and the auxiliary display device", and at this time, the controller may control the main display device and the auxiliary display device to display the same courseware, thereby implementing the dual-screen cloning.
The courseware may be a course Document, which is created according to the teaching requirement through links such as teaching target determination, teaching content and task analysis, teaching activity structure and interface design, for example, PPT (PowerPoint, presentation), word (word processor application), PDF (Portable Document Format), txt (text Document), seewo (wish), and the like.
In one example, the courseware includes a preparation phase, an activity phase, and a summary phase as shown.
The preparation phase is a phase for preparing activities such as interesting classification (competition mode), grouping competition, and misjudgment.
In the preparation phase, parameters such as the type of activity, difficulty, number of participating users, time, etc. may be set.
For activities such as interesting classification (competition mode), grouping competition, right and wrong judgment and the like, if a start control is clicked, the activity can be expanded and the activity stage is entered.
For other activities, the activity phase is entered after entering the activity page or reset of the courseware.
In the activity phase, a control for selecting elements in the lecture listening terminal is activated to be in an operable state, at this time, the lecture listening terminal can operate the elements related to the activity, for example, in the activity of classifying "region" and "country", the card "Beijing", "New York", "USA" and "China" in the activity is dragged, the elements for controlling the activity (such as controls for pausing, continuing, resetting and the like) and the elements unrelated to the activity (such as shape and thinking guide diagram) can be operated.
In the summary phase, the results of the activity, such as scores, answers, etc., may be displayed, and in this phase, the lecture terminal may click on controls for resetting or viewing the answers.
In a particular implementation, the controller may determine a courseware with which to generate a first main video signal of the same content.
Wherein the first main video signal belongs to a video signal, such as an HDMI signal.
In one way of generating the first main video signal, a storage device is connected to the main display device, wherein the storage device is a device for storing data, such as a usb disk.
In this manner, the controller may read courseware from the storage device and store the courseware in a local cache.
At this time, the controller may invoke an application adapted to the format of the courseware, open the courseware, and at this time, display the courseware on the desktop, convert the desktop data into two paths of video signals, thereby generating a first main video signal, wherein the first main video signal is used for displaying the courseware.
Of course, the manner of generating the first main video signal is only an example, and when the embodiment is implemented, other manners of generating the first main video signal may be set according to actual situations, for example, downloading a courseware from a cloud and generating the first main video signal according to the courseware, and the like, which is not limited in this embodiment of the present invention. In addition to the above-mentioned manner of generating the first main video signal, a person skilled in the art may also adopt other manners of generating the first main video signal according to actual needs, and this embodiment is not limited to this.
S202, the controller transmits the first main video signal to the main display controller.
In this embodiment, the controller outputs the first main video signal to the main display controller, and the main display controller is configured to control the main screen to play the first main video signal.
S203, the main display controller generates a first sub video signal based on the first main video signal, and the first sub video signal is a screen driving signal matched with the main screen.
Specifically, in this embodiment, after receiving the first main video signal, the main display controller may process the first main video signal according to a predetermined protocol, for example, compress the first main video signal to a uniform resolution, cut, add a watermark, add annotation information, and the like, and further convert the first main video signal into a screen driving signal, thereby generating a first sub video signal.
Wherein, the matching of the first sub video signal with the main screen means that the main screen can play the first sub video signal.
Of course, in this embodiment, the main screen and the sub-screen may adopt the same specification of driving signals. The main display controller or the auxiliary display controller can convert the input video signal to obtain the driving signal of the same specification and the driving signal suitable for the main screen and the auxiliary screen.
S204, the main display controller transmits the first sub video signal to the signal converter, and the signal converter is used for transmitting the first sub video signal to a main screen for playing; the first sub video signal is converted into the first main video signal, and the first main video signal is transmitted to the signal switcher.
In this embodiment, the signal converter belongs to a converter, and may receive a driving signal, and convert the driving signal into a first signal and a second signal for outputting, where the first signal is a video signal, and the second signal is a screen driving signal. That is, after the first sub-video signal is processed by the signal converter, the signal converter may output the original first sub-video signal in one path, and output the first main video signal restored according to the first sub-video signal in the other path.
The first video signal output by the signal converter can be directly transmitted to the main screen for playing. Further, the main display controller can put the first main video signal into the frame memory, generate serial display data and scanning control timing required by the main screen for the first main video signal in a partition driving manner, namely, the first sub video signal, and transmit the first sub video signal to the main screen through the signal converter, and the main screen plays according to the first sub video signal (serial display data and scanning control timing), so that the first sub video signal corresponding to the first main video signal, namely, courseware is, is displayed on the main screen.
The first main video signal output by the signal converter is transmitted to the signal switcher.
S205, the main display controller transmits a first enabling signal to the signal switcher to control the signal switcher to transmit the first main video signal to the auxiliary display controller, and the auxiliary display controller is used for converting the first main video signal into a first sub video signal and transmitting the first sub video signal to the auxiliary screen for playing.
In this embodiment, the main display controller outputs the first sub-video signal to the signal converter, and at the same time, the main display controller generates the first enable signal and transmits the first enable signal to the signal switcher.
The signal switcher responds to the first enabling signal and outputs a first main video signal from the signal switcher, namely, the first main video signal is output to the auxiliary display controller, and the auxiliary display controller converts the first main video signal into a first sub video signal and transmits the first sub video signal to the auxiliary screen for playing. Similarly, the first component video signal is matched with the sub-screen and can be played in the sub-screen.
Further, the sub display controller receives a first main video signal from the main display device, puts the first main video signal into the frame memory, generates serial display data and a scanning control time sequence required by a screen aiming at the first main video signal in a partition driving mode, namely a first sub video signal, and plays the sub screen according to the first sub video signal (the serial display data and the scanning control time sequence), so that courseware is displayed on the sub screen.
In the embodiment, the controller determines a courseware and generates a first main video signal according to the courseware; the controller transmits the first main video signal to the main display controller; the main display controller generates a first sub video signal based on the first main video signal, wherein the first sub video signal is a screen driving signal matched with the main screen; the main display controller transmits the first sub video signal to the signal converter, and the signal converter is used for transmitting the first sub video signal to the main screen for playing; the signal switcher is used for switching the first main video signal from the first main video signal to the second main video signal; the main display controller transmits the first enabling signal to the signal switcher, the first main video signal is transmitted to the auxiliary display controller by the control signal switcher, the auxiliary display controller is used for converting the first main video signal into a first sub video signal, the first sub video signal is transmitted to the auxiliary screen to be played, courseware is are uniformly managed by the controller, the main display controller and the auxiliary display controller do not need to communicate frequently with the courseware, simplicity of operation is greatly improved, the first sub main video signal is displayed, the courseware can be displayed, real-time performance of displaying the courseware by the main display device and the auxiliary display device is guaranteed, and time delay of displaying the courseware is reduced.
Example two
Fig. 3 is a flowchart of a courseware display method according to a second embodiment of the present invention, and the present embodiment further adds a processing operation of operating courseware on a main display device based on the foregoing embodiment, where the method specifically includes the following steps:
s301, the controller determines courseware and generates a first main video signal according to the courseware.
S302, the controller transmits the first main video signal to the main display controller.
S303, the main display controller generates a first sub video signal based on the first main video signal, and the first sub video signal is a screen driving signal matched with the main screen.
S304, the main display controller transmits the first sub video signal to the signal converter, and the signal converter is used for transmitting the first sub video signal to a main screen for playing; the first sub video signal is converted into the first main video signal, and the first main video signal is transmitted to the signal switcher.
S305, the main display controller transmits a first enabling signal to the signal switcher to control the signal switcher to transmit the first main video signal to the auxiliary display controller, and the auxiliary display controller is used for converting the first main video signal into a first sub video signal and transmitting the first sub video signal to the auxiliary screen for playing.
S306, the controller receives touch operation acting on the main display device.
And S307, the controller operates the courseware according to the touch operation.
In this embodiment, the main display controller shields the touch operation applied to the main display device.
The term "shield" may refer to that the main display controller receives the touch operation but ignores the touch operation, or refers to that the touch operation is transmitted to the controller without being transmitted to the main display controller, which is not limited in this embodiment.
The user can trigger touch operation on the screen of the main display device by using a finger or a touch pen according to the demonstration condition of the actual courseware, and the touch operation is transmitted to the controller.
The controller responds to touch operation on the main display device to operate courseware.
Further, in the main display device, the touch operation may be transmitted through a standard USB protocol, a USB switch is disposed in the main display device, the USB switch is respectively connected to the controller and the main display controller, after the touch operation is generated on the screen of the main display device, the touch operation is sent to the USB switch, the USB switch may distribute the touch operation to the controller and the main display controller, and the main display controller may send an enable signal to the USB switch, so as to control the USB switch to output the touch operation to the controller and/or the main display controller.
It should be noted that the main display controller controls the logic distributed by the touch operation, and after receiving the touch operation, the controller does not determine whether to respond to the touch operation, but directly responds to the touch operation, so that the logical coincidence between the controller and the main display controller is reduced, and the coupling between the controller and the main display controller is reduced.
In this embodiment, the main display controller may send an enable signal to the USB switch to control the USB switch to output the touch operation to the controller, and at this time, the main display controller does not receive the touch operation, or outputs the touch operation to the controller and the main display controller at the same time, and at this time, the main display controller ignores the touch operation.
In particular implementations, courseware includes pages, each having elements, such as text, pictures, video, and so forth, therein.
The touch operation can be used to operate on a page, such as adding a new page, deleting an original page, turning a page (including turning a previous page, turning a next page), and the like.
The touch operation may also be used to operate on elements in the page, such as adding a new element, deleting an original element, modifying an original element (e.g., dragging, rotating, zooming, changing a property (e.g., a color, a font type), and the like.
In one case, the touch operation may refer to data of touch points, which includes one or more of the number of touch points, the state of the touch points, coordinates of the touch points, and pressure values of the touch points.
Wherein the coordinates of the touch point include a horizontal axis coordinate x and a vertical axis coordinate y.
If the screen of the main display device and the screen of the auxiliary display device have difference in resolution, the coordinates of the touch point on the screen of the main display device can be mapped to a unified screen to unify the coordinates, so that courseware operation is facilitated, namely linear scaling and offset are performed according to the size of the touch point on the screen of the main display device, and matching of the touch position and the display position is achieved.
For example, the resolution of the screen of the main display device is 1000 × 500, the resolution of the unified screen is 500 × 500, when the screen of the main display device displays a courseware, the display area of the main display device is 500 × 500 in the middle of the screen, two black edges of 250 × 500 appear on two sides of the screen, the vertex at the upper left corner of the touch display end is used as the origin of coordinates, and if the current touch point is (250, 0) at the touch display end, the actual click position corresponds to the (0, 0) point of the unified screen.
If the screen of the main display device is identical to the screen of the sub display device in resolution, the coordinates of the touch point may be directly used.
In another case, the touch operation may refer to a touch event, also called a touch gesture, a slide gesture, and the like, such as a double click, a leftward slide, a rightward slide, and the like.
In this case, the main display device may encapsulate data of the touch point as a touch event to map to a function commonly used for courseware, such as mapping a leftward sliding to a page turning on the previous page, mapping a rightward sliding to a page turning on the next page, and the like, thereby reducing an amount of computation of the data of the touch point by the controller.
Further, the main display device converts the data of the touch point into a touch event, the touch event can be packaged by adopting a keyboard protocol and then sent to the controller, the key event is directly sent to the controller in a USB HID keyboard mode, and the controller directly executes the operation corresponding to the key event.
After the controller operates the courseware, the first main video signal is correspondingly updated, and the operation acted on the main display device is synchronously displayed in the main display device and the auxiliary display device.
In this embodiment, the controller receives a touch operation applied to the main display device, operates the courseware according to the touch operation, facilitates a user to operate the courseware on the main display device in a near manner under the condition that the distance between the main display device and the auxiliary display device is long, and synchronously displays the user's operation on the courseware on the auxiliary display device, and the practicability is high.
EXAMPLE III
Fig. 4 is a flowchart of a courseware display method provided by a third embodiment of the present invention, and the present embodiment further adds a processing operation of operating courseware on a secondary display device based on the foregoing embodiment, and the method specifically includes the following steps:
s401, the controller determines courseware and generates a first main video signal according to the courseware;
s402, the controller transmits the first main video signal to the main display controller;
s403, the main display controller generates a first sub video signal based on the first main video signal, wherein the first sub video signal is a screen driving signal matched with the main screen;
s404, the main display controller transmits the first sub video signal to the signal converter, and the signal converter is used for transmitting the first sub video signal to a main screen for playing; converting the first divided video signal into the first main video signal, and transmitting the first main video signal to the signal switcher;
s405, the main display controller transmits a first enable signal to the signal switcher so as to control the signal switcher to transmit the first main video signal to the auxiliary display controller, and the auxiliary display controller is used for converting the first main video signal into a first sub video signal and transmitting the first sub video signal to the auxiliary screen for playing;
s406, the controller receives touch operation acting on the auxiliary display equipment.
And S407, the controller operates the courseware according to the touch operation.
In this embodiment, the sub display controller shields the touch operation applied to the sub display device.
The shielding may refer to that the secondary display controller receives the touch operation but ignores the touch operation, or may refer to that the touch operation is transmitted to the controller without being transmitted to the secondary display controller, which is not limited in this embodiment.
The user can trigger touch operation on the screen of the auxiliary display device by using a finger or a touch pen according to the demonstration condition of the actual courseware, and the touch operation is transmitted to the controller through the data port of the auxiliary display device and the data port of the main display device.
The controller responds to touch operation on the auxiliary display device to operate courseware.
Further, in the secondary display device, the touch operation may be transmitted through a standard USB protocol, a USB switch is disposed in the secondary display device, and the USB switch is connected to the data ports of the secondary display device and the secondary display device, respectively, after the touch operation is generated on the screen of the secondary display device, the touch operation is sent to the USB switch, and the USB switch may distribute the touch operation to the secondary display device, or the touch operation is distributed to the controller through the data port of the secondary display device, and the secondary display device may send an enable signal to the USB switch, so as to control the USB switch to output the touch operation to the controller and/or the secondary display device.
It should be noted that the sub display controller controls the logic distributed by the touch operation, and after receiving the touch operation, the controller directly responds to the touch operation without determining whether to respond to the touch operation, so that the logical coincidence between the controller and the sub display controller is reduced, and the coupling between the controller and the sub display controller is reduced.
In this embodiment, the secondary display controller may send an enable signal to the USB switch to control the USB switch to output the touch operation to the controller, and at this time, the secondary display controller does not receive the touch operation, or outputs the touch operation to the controller and the secondary display controller at the same time, and at this time, the secondary display controller ignores the touch operation.
In particular implementations, courseware includes pages, each having elements, such as text, pictures, video, and so forth, therein.
The touch operation can be used to operate on a page, such as adding a new page, deleting an original page, turning a page (including turning a previous page, turning a next page), and the like.
The touch operation may also be used to operate on elements in the page, such as adding a new element, deleting an original element, modifying an original element (e.g., dragging, rotating, zooming, changing a property (e.g., a color, a font type), and the like.
Further, the touch operation may refer to data of touch points, which includes one or more of the number of touch points, the state of the touch points, coordinates of the touch points, and pressure values of the touch points.
Wherein the coordinates of the touch point include a horizontal axis coordinate x and a vertical axis coordinate y.
If the resolution of the screen of the main display device is different from that of the screen of the auxiliary display device, the coordinates of the touch point on the screen of the auxiliary display device can be mapped to the unified screen to unify the coordinates, so that courseware operation is facilitated, namely linear scaling and offset are performed according to the size of the touch point on the auxiliary display device, and matching of the touch position and the display position is realized.
For example, the resolution of the screen of the secondary display device is 1000 × 500, the resolution of the unified screen is 500 × 500, when the screen of the secondary display device displays a courseware, the display area of the secondary display device is 500 × 500 in the middle of the screen, two black edges of 250 × 500 appear on two sides of the screen, the vertex at the upper left corner of the touch display end is used as the origin of coordinates, and if the current touch point is (250, 0) at the touch display end, the actual click position corresponds to the (0, 0) point of the unified screen.
If the screen of the main display device is identical to the screen of the sub display device in resolution, the coordinates of the touch point may be directly used.
After the controller operates the courseware, the first main video signal is correspondingly updated, and the operation acting on the auxiliary display equipment is synchronously displayed in the main display equipment and the auxiliary display equipment.
In this embodiment, the controller receives a touch operation applied to the secondary display device, operates the courseware according to the touch operation, facilitates a user to operate the courseware nearby on the secondary display device and synchronously displays the user's operation on the courseware on the secondary display device under the condition that the distance between the primary display device and the secondary display device is long, and the practicability is high.
Example four
Fig. 5 is a schematic structural diagram of a main display device according to a fourth embodiment of the present invention, the main display device is connected to a secondary display device, and the main display device is provided with a controller 501, a main display controller 502, a signal switcher 504, a signal converter 503, and a main screen 505; the auxiliary display device is provided with an auxiliary display controller and an auxiliary screen, wherein,
the controller 501 is configured to:
determining courseware, and generating a first main video signal according to the courseware;
transmitting the first main video signal to the main display controller 502;
the main display controller 502 is configured to:
generating a first sub video signal based on the first main video signal, the first sub video signal being a screen driving signal adapted to the main screen 505;
transmitting the first divided video signal to the signal converter 503, wherein the signal converter 503 is configured to transmit the first divided video signal to a main screen 505 for playing; converting the first divided video signal into the first main video signal, and transmitting the first main video signal to the signal switcher 504;
transmitting a first enable signal to the signal switcher 504 to control the signal switcher 504 to transmit the first main video signal to the secondary display controller, wherein the secondary display controller is used for converting the first main video signal into a first sub video signal and transmitting the first sub video signal to the secondary screen for playing.
In one embodiment of the present invention, a storage device is connected to the main display device, and the controller 501 is further configured to:
reading courseware from the storage device;
generating a first main video signal for displaying the courseware.
In an embodiment of the present invention, the main display controller 502 shields the touch operation applied to the main display device.
In one embodiment of the present invention, the controller 501 is further configured to:
receiving touch operation acting on the main display equipment;
and operating the courseware according to the touch operation.
In one embodiment of the present invention, the secondary display controller shields a touch operation applied to the secondary display device.
In one embodiment of the present invention, the controller 501 is further configured to:
receiving touch operation acting on the auxiliary display equipment;
and operating the courseware according to the touch operation.
The main display device provided by the embodiment of the invention can execute the courseware display method provided by any embodiment of the invention, and has the corresponding functional modules and beneficial effects of the execution method.
EXAMPLE five
Fig. 6 is a schematic structural diagram of a courseware display system according to a fifth embodiment of the present invention, the system includes a main display device 610 and a sub display device 620 connected together, the main display device 610 is provided with a controller 611, a main display controller 612, a signal switcher 614, a signal converter 613, and a main screen 615; a secondary display controller 621 and a secondary screen 622 are arranged in the secondary display device 620;
the controller 611 is configured to determine a courseware, and generate a first main video signal according to the courseware; transmitting the first main video signal to the main display controller 612;
the main display controller 612 is configured to generate a first sub video signal based on the first main video signal, where the first sub video signal is a screen driving signal adapted to the main screen 615; transmitting the first component video signal to the signal converter 613, wherein the signal converter 613 is configured to transmit the first component video signal to a main screen 615 for playing; converting the first split video signal into the first main video signal, and transmitting the first main video signal to the signal switch 614; transmits a first enable signal to the signal switch 614 to control the signal switch 614 to transmit the first main video signal to the sub display 621,
the secondary display controller 621 is configured to convert the first main video signal into a first sub video signal, and transmit the first sub video signal to the secondary screen 622 for playing.
In one embodiment of the present invention, a storage device is connected to the primary display device 610, and the controller 611 is further configured to:
reading courseware from the storage device;
generating a first main video signal for displaying the courseware.
In an embodiment of the present invention, the main display 612 is further configured to shield the touch operation applied to the main display 610.
In one embodiment of the present invention, the controller 611 is further configured to:
receiving a touch operation acting on the primary display device 610;
and operating the courseware according to the touch operation.
In an embodiment of the present invention, the secondary display controller 621 is further configured to shield the touch operation applied to the secondary display device 620.
In one embodiment of the present invention, the controller 611 is further configured to:
receiving a touch operation applied to the sub display device 620;
and operating the courseware according to the touch operation.
The courseware display system provided by the embodiment of the invention can execute the courseware display method provided by any embodiment of the invention, and has the corresponding functional modules and beneficial effects of the execution method.
EXAMPLE six
Fig. 7 is a schematic structural diagram of a computer device according to a sixth embodiment of the present invention. As shown in fig. 7, the computer apparatus includes a processor 700, a memory 701, a communication module 702, an input device 703, and an output device 704; the number of the processors 700 in the computer device may be one or more, and one processor 700 is taken as an example in fig. 7; the processor 700, the memory 701, the communication module 702, the input device 703 and the output device 704 in the computer apparatus may be connected by a bus or other means, and fig. 7 illustrates an example of connection by a bus.
The memory 701 is a computer-readable storage medium, and can be used for storing software programs, computer-executable programs, and modules, such as modules corresponding to the display method of the courseware in the present embodiment (for example, the controller 501 and the main display controller 502 in the main display device shown in fig. 5, or the controller 611, the main display controller 612, and the sub display controller 621 in the display system of the courseware shown in fig. 6). The processor 700 executes various functional applications and data processing of the computer device by running software programs, instructions and modules stored in the memory 701, that is, implements the courseware display method described above.
The memory 701 may mainly include a program storage area and a data storage area, wherein the program storage area may store an operating system, an application program required for at least one function; the storage data area may store data created according to use of the computer device, and the like. Further, the memory 701 may include high speed random access memory, and may also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other non-volatile solid state storage device. In some examples, memory 701 may further include memory located remotely from processor 700, which may be connected to a computer device through a network. Examples of such networks include, but are not limited to, the internet, intranets, local area networks, mobile communication networks, and combinations thereof.
And the communication module 702 is used for establishing connection with the display screen and realizing data interaction with the display screen. The input device 703 may be used to receive input numeric or character information and generate key signal inputs related to user settings and function control of the computer apparatus.
The computer device provided by the embodiment of the invention can execute the courseware display method provided by any embodiment of the invention, and has corresponding functions and beneficial effects.
EXAMPLE seven
The seventh embodiment of the present invention further provides a computer-readable storage medium, on which a computer program is stored, where the computer program, when executed by a processor, implements a courseware display method, a main display device is connected to a sub-display device, the main display device is provided with a controller, a main display controller and a signal switcher, the sub-display device is provided with a sub-display controller, and the method includes:
the controller determines courseware and generates a first main video signal according to the courseware;
the controller transmits the first main video signal to the main display controller;
the main display controller generates a first sub video signal based on the first main video signal, wherein the first sub video signal is a screen driving signal matched with the main screen;
the main display controller transmits the first sub video signal to the signal converter, and the signal converter is used for transmitting the first sub video signal to a main screen for playing; converting the first divided video signal into the first main video signal, and transmitting the first main video signal to the signal switcher;
the main display controller transmits a first enabling signal to the signal switcher to control the signal switcher to transmit the first main video signal to the auxiliary display controller, and the auxiliary display controller is used for converting the first main video signal into a first sub video signal and transmitting the first sub video signal to the auxiliary screen for playing.
Of course, the computer readable storage medium provided by the embodiment of the present invention is not limited to the above-mentioned method operations, and may also perform related operations in the courseware display method provided by any embodiment of the present invention.
From the above description of the embodiments, it is obvious for those skilled in the art that the present invention can be implemented by software and necessary general hardware, and certainly, can also be implemented by hardware, but the former is a better embodiment in many cases. Based on such understanding, the technical solutions of the present invention may be embodied in the form of a software product, which can be stored in a computer-readable storage medium, such as a floppy disk, a Read-Only Memory (ROM), a Random Access Memory (RAM), a FLASH Memory (FLASH), a hard disk or an optical disk of a computer, and includes several instructions for enabling a computer device (which may be a personal computer, a server, or a network device) to execute the methods according to the embodiments of the present invention.
It should be noted that, in the embodiment of the display system of the main display device or the courseware, each included unit and module are only divided according to the functional logic, but are not limited to the above division as long as the corresponding functions can be realized; in addition, specific names of the functional units are only for convenience of distinguishing from each other, and are not used for limiting the protection scope of the present invention.
It is to be noted that the foregoing is only illustrative of the preferred embodiments of the present invention and the technical principles employed. It will be understood by those skilled in the art that the present invention is not limited to the particular embodiments described herein, but is capable of various obvious changes, rearrangements and substitutions as will now become apparent to those skilled in the art without departing from the scope of the invention. Therefore, although the present invention has been described in greater detail by the above embodiments, the present invention is not limited to the above embodiments, and may include other equivalent embodiments without departing from the spirit of the present invention, and the scope of the present invention is determined by the scope of the appended claims.

Claims (10)

1. A courseware display method is characterized in that a main display device is connected with an auxiliary display device, and a controller, a main display controller, a signal switcher, a signal converter and a main screen are arranged in the main display device; the auxiliary display device is provided with an auxiliary display controller and an auxiliary screen; the method comprises the following steps:
the controller determines courseware and generates a first main video signal according to the courseware;
the controller transmits the first main video signal to the main display controller;
the main display controller generates a first sub video signal based on the first main video signal, wherein the first sub video signal is a screen driving signal matched with the main screen;
the main display controller transmits the first sub video signal to the signal converter, and the signal converter is used for transmitting the first sub video signal to a main screen for playing; converting the first divided video signal into the first main video signal, and transmitting the first main video signal to the signal switcher;
the main display controller transmits a first enabling signal to the signal switcher to control the signal switcher to transmit the first main video signal to the auxiliary display controller, and the auxiliary display controller is used for converting the first main video signal into a first sub video signal and transmitting the first sub video signal to the auxiliary screen for playing.
2. The method of claim 1, wherein a storage device is coupled to the primary display device, and wherein the controller determines a courseware from which to generate the first primary video signal comprises:
the controller reads courseware from the storage device;
the controller generates a first main video signal for displaying the courseware.
3. The method of claim 1, wherein the master display controller masks touch operations on the master display device.
4. The method of claim 1, 2 or 3, further comprising:
the controller receives touch operation acting on the main display device;
and the controller operates the courseware according to the touch operation.
5. The method of claim 1, wherein the secondary display controller masks touch operations on the secondary display device.
6. The method of claim 1, 2 or 5, further comprising:
the controller receives touch operation acting on the auxiliary display equipment;
and the controller operates the courseware according to the touch operation.
7. The main display device is characterized in that the main display device is connected with a pair of display devices, and a controller, a main display controller, a signal switcher, a signal converter and a main screen are arranged in the main display device; the auxiliary display device is provided with an auxiliary display controller and an auxiliary screen, wherein,
the controller is used for determining courseware and generating a first main video signal according to the courseware; transmitting the first main video signal to the main display controller;
the main display controller is used for generating a first sub video signal based on the first main video signal, wherein the first sub video signal is a screen driving signal matched with the main screen; transmitting the first component video signal to the signal converter, wherein the signal converter is used for transmitting the first component video signal to a main screen for playing; converting the first divided video signal into the first main video signal, and transmitting the first main video signal to the signal switcher; and transmitting a first enabling signal to the signal switcher so as to control the signal switcher to transmit the first main video signal to the auxiliary display controller, wherein the auxiliary display controller is used for converting the first main video signal into a first sub video signal and transmitting the first sub video signal to the auxiliary screen for playing.
8. The courseware display system is characterized by comprising a main display device and an auxiliary display device which are connected, wherein the main display device is internally provided with a controller, a main display controller, a signal switcher, a signal converter and a main screen; the auxiliary display device is provided with an auxiliary display controller and an auxiliary screen;
the controller is used for determining courseware and generating a first main video signal according to the courseware; transmitting the first main video signal to the main display controller;
the main display controller is used for generating a first sub video signal based on the first main video signal, wherein the first sub video signal is a screen driving signal matched with the main screen; transmitting the first component video signal to the signal converter, wherein the signal converter is used for transmitting the first component video signal to a main screen for playing; converting the first divided video signal into the first main video signal, and transmitting the first main video signal to the signal switcher; transmitting a first enable signal to the signal switcher to control the signal switcher to transmit the first main video signal to the sub display controller,
and the auxiliary display controller is used for converting the first main video signal into a first sub video signal and transmitting the first sub video signal to the auxiliary screen for playing.
9. A computer device, characterized in that the computer device comprises:
one or more processors;
a memory for storing one or more programs;
when executed by the one or more processors, cause the one or more processors to implement a method of displaying courseware as claimed in any one of claims 1 to 6.
10. A computer-readable storage medium, on which a computer program is stored, which, when being executed by a processor, carries out a method of displaying a courseware according to any one of claims 1-6.
CN201910941704.1A 2019-09-30 2019-09-30 Courseware display method, system, equipment and storage medium Active CN112584206B (en)

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