WO2013113190A1 - Method and system for implementing multi-screen synchronous display - Google Patents

Method and system for implementing multi-screen synchronous display Download PDF

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Publication number
WO2013113190A1
WO2013113190A1 PCT/CN2012/073672 CN2012073672W WO2013113190A1 WO 2013113190 A1 WO2013113190 A1 WO 2013113190A1 CN 2012073672 W CN2012073672 W CN 2012073672W WO 2013113190 A1 WO2013113190 A1 WO 2013113190A1
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WIPO (PCT)
Prior art keywords
screen
video file
file
source
data
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PCT/CN2012/073672
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French (fr)
Chinese (zh)
Inventor
喻子达
王袭
赵向阳
韩文
朴成杰
黄橙
周林
安娜
Original Assignee
海尔集团公司
海尔集团技术研发中心
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Publication of WO2013113190A1 publication Critical patent/WO2013113190A1/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
    • H04N21/41Structure of client; Structure of client peripherals
    • H04N21/414Specialised client platforms, e.g. receiver in car or embedded in a mobile appliance
    • H04N21/41407Specialised client platforms, e.g. receiver in car or embedded in a mobile appliance embedded in a portable device, e.g. video client on a mobile phone, PDA, laptop
    • 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
    • H04N21/4302Content synchronisation processes, e.g. decoder synchronisation
    • H04N21/4307Synchronising the rendering of multiple content streams or additional data on devices, e.g. synchronisation of audio on a mobile phone with the video output on the TV screen
    • H04N21/43076Synchronising the rendering of multiple content streams or additional data on devices, e.g. synchronisation of audio on a mobile phone with the video output on the TV screen of the same content streams on multiple devices, e.g. when family members are watching the same movie on different devices

Definitions

  • the present invention relates to the field of information transmission technologies, and in particular, to a method and system for implementing multi-screen synchronous display.
  • Triple network integration is also called “triple play”. It means that the telecommunication network, cable TV network and computer communication network are mutually infiltrated, compatible with each other, and gradually integrated into a unified information and communication network around the world, which can provide users with voice. , data and broadcast TV and other services.
  • multi-screen fusion has become the development trend of the current terminal, and can support various terminals to access the video content of a certain terminal anytime and anywhere, so that it can be realized between a television, a computer, a mobile phone, and a tablet computer.
  • the sharing of video content for example, sharing photos, videos, games, and interactive management, etc., synchronizes the video content of smart terminals such as iPhones and iPads to the television, which is convenient for users to use.
  • the user can upload the multimedia file to the server through HTTP or FTP protocol or provide the multimedia file address to the target party.
  • the target party can view the multimedia file by using the browser to log in to the website, but this method increases the complexity of the file transmission and the network bandwidth. pressure.
  • video sharing can be performed through video sessions and video conferencing, but video sessions and video conferencing usually only transfer small files.
  • the captured video file can be intercepted by the video file at a certain frequency, and the captured image can be directly transmitted to the target party, and then the target party can directly play the screen after receiving the screen capture.
  • this method is to share the small screen device to the large screen device, the resolution and resolution of the transmitted screen capture information are very low, and hesitant to transmit all the picture information, the amount of data is huge, and there is still a lot of redundancy. The remaining data requires a large bandwidth. It can be seen that the currently used video data sharing method cannot achieve fast synchronous playback and high quality synchronous playback.
  • the present invention provides a method and system for implementing multi-screen synchronous display. To achieve fast synchronization and high-quality real-time synchronous playback when the video is synchronized between terminals.
  • the method for realizing multi-screen synchronous display comprises: A.
  • a source screen plays a video file, and acquires screen image data to be sent to a target screen for synchronous play; B.
  • the source screen displays address information of the played video file. And the current play progress information of the video file is sent to the target screen in real time; C.
  • the target screen reads the video file data according to the address information, and plays the position corresponding to the received current play progress information. .
  • the address information in step B includes: a network link address for storing the video file, or a storage address of the source screen of the video file.
  • the multi-screen sharing secondary synchronization can be implemented by downloading the video file according to the source of the video file.
  • the reading the video file data in step C is: reading data of the video file after the current playback progress.
  • the receiving party can save the buffer space by reading the data of the video file after the current playing progress according to the file type of the video file.
  • the method further includes: buffering the video file data; and playing the position corresponding to the received current playback progress information includes: determining the cached video file data. When the difference between the play progress and the current play progress is greater than a preset threshold, the cached video file data is played from the corresponding current play progress position.
  • the source screen sends the source information (file type), the play progress information, and the address information of the video file to the target screen according to the source of the video file, so that the target screen edge plays the received screen image, and simultaneously
  • the video file is downloaded until the length of the downloaded video file is sufficient to play, and the card screen phenomenon is not generated due to insufficient playing data, thereby improving the rate of information transmission and realizing synchronization and seamless playback between terminals.
  • the step C further includes: the target screen notifying the source screen to stop acquiring the screen image data and transmitting.
  • the step C further includes: when the target screen determines that the video file data is faulty, the process returns to step A.
  • the system can detect errors in time, perform functional recovery in time, and improve system fault tolerance.
  • the step C further includes: when the target screen determines that the difference between the playback progress of the cached video file data and the current playback progress is less than a preset threshold, the process returns to step A.
  • the system can detect errors in time, perform functional recovery in time, and improve system fault tolerance.
  • the step A also includes: establishing a shared connection between the source screen and the target screen.
  • the basis for multi-screen sharing between the origin screen and the target screen is established by establishing a shared connection in advance.
  • the invention also provides a system for realizing multi-screen synchronous display, comprising a source screen and a target screen,
  • the source screen includes:
  • a first image processing module configured to process a video file as a screen image to be played by the source screen
  • a screen image acquiring module connected to the first image processing module, configured to acquire a screen image to be played by the source screen, and send the screen image;
  • a file attribute obtaining module configured to acquire address information of the video file and current playback progress information of the video file, and send the data in real time;
  • the target screen includes:
  • a screen image receiving module configured to receive a screen image sent by the screen image acquiring module
  • a file attribute receiving module configured to receive address information of the video file sent by the file attribute obtaining module and current playing progress information
  • a file obtaining module configured to read the video file data according to address information of the video file
  • a second image processing module configured to play a screen image of the source screen acquired by the screen image receiving module, and a current playback progress information received by the file attribute receiving module after the file obtaining module reads the video file data The video file is played at the corresponding location.
  • 1 is a schematic flow chart of a method for realizing multi-screen synchronous display
  • FIG. 2 is a structural diagram of a system for realizing multi-screen synchronous display.
  • FIG. 2 is a structural diagram of a system for implementing multi-screen synchronous display according to the present invention, including a source screen 10 and at least one target screen 20, where the source screen 10 and the target screen 20 represent terminals having a display screen, which will be convenient for description.
  • a terminal having a video file source is referred to as a source screen, and a terminal receiving the video file is referred to as a target screen.
  • the source screen 10 includes
  • the first image processing module 101 is configured to decode a local video file or a network video file, and decode an image to be played by the source screen, that is, a screen image.
  • the screen image acquisition module 102 is connected to the first image processing module 101 for acquiring a screen image to be played by the first image processing module 101 to decode the source screen, or acquiring the displayed image by using a screen capture method, and The acquired screen image is sent out.
  • the file attribute obtaining module 103 is configured to acquire file attribute information of the played local video file or the network video file, and send the file attribute information.
  • the file attribute information describes the file type of the played video file, the corresponding file address information, and the playback progress information of the video file, and the file attribute information will be described in detail later.
  • the target screen 20 includes:
  • the screen image receiving module 201 is configured to receive the screen image sent by the screen image acquiring module 102 and provide the image to the second image processing module 202.
  • the file attribute receiving module 203 is configured to receive file attribute information sent by the file attribute obtaining module 103.
  • the file obtaining module 204 is configured to obtain the local video from the corresponding source screen or the network according to the file type of the video file and the corresponding file address information and the playback progress information of the video file recorded in the file attribute information acquired by the file attribute receiving module 203.
  • the second image processing module 202 is configured to synchronously play the screen image acquired by the screen image receiving module 201, and after the file obtaining module 204 acquires the video file data, switch to the current playback progress information received from the file attribute receiving module.
  • the video file is played at the corresponding location.
  • FIG. 1 illustrates a method for implementing multi-screen synchronous display provided by the present invention, including the following steps:
  • S100 The source screen establishes a shared connection with the target screen.
  • the step may be that the source screen sends a synchronous display request, and after receiving the acknowledged response information sent by the target screen, establishing a connection with the target screen, or may initiate a synchronous display request by the target screen.
  • the source screen transmits screen image data to the target screen in real time by means of screen capture, and transmits attribute information of the video file to the target screen.
  • the screen capture technology is prior art and will not be described again.
  • the attribute information of the video file played by the source screen 10 includes: a file type, file address information, and real-time playback progress information, wherein the play progress information may be time information of the video file. Among them, in order to reduce the amount of data transferred, file type and file address information can be transmitted only once.
  • the file address information is a link address corresponding to the network resource. If the video file is a local resource of the source screen 10, the file address information is a share of the video file. The address, such as the folder directory where the video file is stored.
  • the file type in the file information is used to identify the source of the video file
  • the file type information in the video file attribute information may be in a feature value manner.
  • the feature value is “0” to represent the file type as a network file. That is, the video file is derived from the network, and the feature value of “1” represents that the file type is a local file, that is, the video file is derived from the local file of the source screen 10. If the file type is a network file, the video file attribute information is also included.
  • the video file attribute information also includes address information (such as folder information stored in the file) stored in the video file and shared information of the video file, such as verification related to sharing Information (such as the password required to read the file, etc.).
  • the target screen receives the screen image data in real time and plays it to realize synchronous display with the source screen.
  • the target screen determines the file type of the video file currently being played by the source screen 10 according to the received video file attribute information, and according to the The file type reads the corresponding file address information, and then reads and caches the data of the partial video file after the playback progress according to the playback progress information of the video file to the corresponding file address.
  • the target screen parses the file type of the video file as a network file
  • the target screen reads the required video file from the network address and caches according to the network address information in the video file attribute information, and the process further includes The process of establishing a connection by the server corresponding to the address; if the target screen parses the file type of the video file as a local file, the desired video file is read and cached at the storage address where the shared video file is stored. Further, as described above, in order to save the buffer space according to the playback progress information of the received file, when the video file is read, the reading is started from the file data after the current playback progress.
  • the target screen determines that the playback progress of the cached video file exceeds the threshold of the current progress when the currently playing progress exceeds a certain progress threshold, that is, when the buffered video file includes current and subsequent frame data, the screen capture received by the play is obtained.
  • the screen image data is switched to play the cached video file, and the same progress video file data is played according to the current playback progress.
  • the target screen stops receiving the source screen information, and directly plays the cache according to the playback progress information of the received video file.
  • the video file, and the corresponding information is sent to the source screen, and the screen capture of the target screen is suspended.
  • the length of the video file stored in the cache is related to the download speed and the download time. As the download time increases, the download speed will also increase. If the length of the video file stored in the cache, that is, the playback information after the current playback progress, When the video information in the cache is directly played, the card screen phenomenon occurs. In order to play the video information directly from the cache, the progress of the video file in the target screen buffer and the progress of the received video file are greater than a certain threshold.
  • the threshold is a preset value and can be set according to the playback speed and the download speed.
  • the central processing device of the target screen determines that the currently played screen image information already exists in its cache, and the information after the progress of the screen image information stored in the cache satisfies the threshold information for playing, that is, the video in the cache of the target screen If the progress of the file and the progress of the received video file are greater than the threshold, the target screen terminates the playback of the captured screen, and the video file itself is played, so that the progress of the video file in the target screen playback buffer and the progress of the file played on the capture screen are performed. Seamless docking, and at this time the notification source screen 10 terminates the capture and transmission of the screen image information to the target screen 20. Finally, the video from the source screen to the target screen is synchronized, clear and smooth.
  • the screen capture transmission mode can ensure the fast sharing of the video files played by the source screen and the target screen, and the resolution may be different due to the size of the source screen and the target screen.
  • the source screen is much smaller than the target screen size (for example, the source screen is PAD and the target screen is TV)
  • this method will cause the target screen to play unclear.
  • the target screen is judged and read by the target screen, and the playback progress information is synchronously switched to play the corresponding data of the video file, so that the target screen and the source screen play the same content, and the target screen displays Clearer video.
  • the target screen when the video file data cached by the target screen is less than a threshold, the target screen sends corresponding information to the source screen, requests the source screen to continue to capture the screen and sends the image to the target screen, and returns to step S110.
  • a network failure involving the target screen causes the cached video to finish playing when the signal of the target screen connected to the network is not good.

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  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • General Engineering & Computer Science (AREA)
  • Two-Way Televisions, Distribution Of Moving Picture Or The Like (AREA)
  • Information Transfer Between Computers (AREA)

Abstract

Provided in the present invention is a method for implementing multi-screen synchronous display, comprising: A. a source screen playing a video file, acquiring screen image data and transmitting same to a destination screen for synchronous playback; B. the source screen transmitting in real time to the destination screen address information of the video file being played and current playback progress information of the video file; and, C. the destination screen reading the data of the video file on the basis of the address information, and playing from the position corresponding to the current playback progress information received. Also, correspondingly provided is a system for multi-screen synchronous display. By downloading the video file on the basis of the source of the video file at the same time as the screen image is being transmitted and played, multi-screen shared resynchronization is implemented, and seamless connection is implemented for playback screenshot and the video file being played, thus implementing synchronous, clear, and smooth video playback from a small screen device to a large screen device.

Description

一种实现多屏同步显示的方法及系统  Method and system for realizing multi-screen synchronous display
技术领域Technical field
本发明涉及信息传输技术领域,特别涉及一种实现多屏同步显示的方法及系统。The present invention relates to the field of information transmission technologies, and in particular, to a method and system for implementing multi-screen synchronous display.
背景技术Background technique
“三网融合”又叫“三网合一”,是指电信网、有线电视网和计算机通信网的相互渗透、互相兼容、并逐步整合成为全世界统一的信息通信网络,能为用户提供语音、数据和广播电视等多种服务。"Triple network integration" is also called "triple play". It means that the telecommunication network, cable TV network and computer communication network are mutually infiltrated, compatible with each other, and gradually integrated into a unified information and communication network around the world, which can provide users with voice. , data and broadcast TV and other services.
随着移动互联网的快速发展,多屏融合成为当前终端的发展趋势,能随时随地地支持各种终端来访问某一终端的视频内容,从而可以在电视机、计算机、手机、平板电脑之间实现视频内容的共享,例如,共享照片、视频、游戏以及交互管控等,将iPhone、ipad等智能终端的视频内容同步到电视机上,可以方便用户的使用。With the rapid development of the mobile Internet, multi-screen fusion has become the development trend of the current terminal, and can support various terminals to access the video content of a certain terminal anytime and anywhere, so that it can be realized between a television, a computer, a mobile phone, and a tablet computer. The sharing of video content, for example, sharing photos, videos, games, and interactive management, etc., synchronizes the video content of smart terminals such as iPhones and iPads to the television, which is convenient for users to use.
用户可通过HTTP、FTP等协议将多媒体文件上传到服务器上或向目标方提供多媒体文件地址,目标方通过使用浏览器登录网站观看多媒体文件,但这种方式增加了文件传输的复杂度以及网络带宽的压力。或者可通过视频会话、视频会议的方式进行视频共享,但视频会话、视频会议的方式通常只能传输小文件。或者可通过邮件附件交互多媒体文件,但是这种共享方式必须要求主被叫同时参与才可以完成,而且视频播放是一次性的。The user can upload the multimedia file to the server through HTTP or FTP protocol or provide the multimedia file address to the target party. The target party can view the multimedia file by using the browser to log in to the website, but this method increases the complexity of the file transmission and the network bandwidth. pressure. Or video sharing can be performed through video sessions and video conferencing, but video sessions and video conferencing usually only transfer small files. Or you can interact with the multimedia file through the email attachment, but this sharing method must require the main callee to participate at the same time to complete, and the video playback is one-off.
另外,还可通过对正在播放的视频文件按照一定的频率截取视频文件,将截获的图片直接传送至目标方,然后目标方接收截屏之后直接播放。但是如果这种方式是将小屏幕装置到大屏幕装置的共享,所传输的截屏信息的分辨率与清晰度都很低,并且犹豫传输所有的图片信息,数据量庞大,并且其中还含有很多冗余数据,需要占用较大的带宽。由此可见,目前常用的视频数据共享方法不能实现既快速同步播放,又兼顾高质量同步播放。In addition, the captured video file can be intercepted by the video file at a certain frequency, and the captured image can be directly transmitted to the target party, and then the target party can directly play the screen after receiving the screen capture. However, if this method is to share the small screen device to the large screen device, the resolution and resolution of the transmitted screen capture information are very low, and hesitant to transmit all the picture information, the amount of data is huge, and there is still a lot of redundancy. The remaining data requires a large bandwidth. It can be seen that the currently used video data sharing method cannot achieve fast synchronous playback and high quality synchronous playback.
发明内容Summary of the invention
为解决上述问题,本发明提供了一种实现多屏同步显示的方法及系统。以实现终端间视频的同步播放时的快速同步和高质量实时同步播放。In order to solve the above problems, the present invention provides a method and system for implementing multi-screen synchronous display. To achieve fast synchronization and high-quality real-time synchronous playback when the video is synchronized between terminals.
本发明实施例提供的实现多屏同步显示的方法,包括:A、源屏播放一视频文件,并获取屏幕图像数据发送至目标屏进行同步播放;B、源屏将所播放视频文件的地址信息和该视频文件的当前播放进度信息实时发送至目标屏;C、所述目标屏根据所述地址信息读取所述视频文件数据,并从所接收的当前的播放进度信息所对应的位置进行播放。 The method for realizing multi-screen synchronous display provided by the embodiment of the present invention comprises: A. A source screen plays a video file, and acquires screen image data to be sent to a target screen for synchronous play; B. The source screen displays address information of the played video file. And the current play progress information of the video file is sent to the target screen in real time; C. The target screen reads the video file data according to the address information, and plays the position corresponding to the received current play progress information. .
通过在传输屏幕图像进行快速同步播放的同时,根据所述视频文件的来源下载视频文件,并在下载足够的数据量后,切换到直接播放下载的视频文件,且对应到所实时的播放进度上,即实现多屏共享二次同步,实现播放截屏与播放视频文件本身的无缝对接,且直接播放视频文件保证了高质量播放。从而实现小屏幕装置至大屏幕装置的视频同步、清晰、流畅的播放。By downloading the video file according to the source of the video file while downloading the screen image, and downloading the video file according to the source of the video file, and switching to the directly playing the downloaded video file, and corresponding to the real-time playback progress. That is, the multi-screen sharing secondary synchronization is realized, and the seamless connection between the playback screen capture and the playback video file itself is realized, and the video file is directly played to ensure high-quality playback. Thereby, the video synchronization, clear and smooth playback of the small screen device to the large screen device is realized.
其中,步骤B所述地址信息包括:存放所述视频文件的网络链接地址,或存放所述视频文件源屏的存储地址。The address information in step B includes: a network link address for storing the video file, or a storage address of the source screen of the video file.
根据所述视频文件的来源下载视频文件,可以实现多屏共享二次同步。The multi-screen sharing secondary synchronization can be implemented by downloading the video file according to the source of the video file.
其中,步骤C所述读取所述视频文件数据为:读取视频文件在所述当前播放进度之后的数据。The reading the video file data in step C is: reading data of the video file after the current playback progress.
接收方根据视频文件的文件类型读取视频文件在所述当前播放进度之后的数据,可以节省缓存空间。The receiving party can save the buffer space by reading the data of the video file after the current playing progress according to the file type of the video file.
其中,步骤C读取所述视频文件数据后还包括:对所述视频文件数据进行缓存;所述从所接收的当前的播放进度信息所对应的位置进行播放包括:判断缓存的视频文件数据的播放进度与所述当前播放进度之差大于预先设定的阈值时,将缓存的所述视频文件数据从对应当前播放进度位置进行播放。After the step C reads the video file data, the method further includes: buffering the video file data; and playing the position corresponding to the received current playback progress information includes: determining the cached video file data. When the difference between the play progress and the current play progress is greater than a preset threshold, the cached video file data is played from the corresponding current play progress position.
所述源屏根据视频文件的来源,在发送屏幕图像的同时将视频文件的来源信息(文件类型)、播放进度信息以及地址信息发送给目标屏,从而使目标屏边播放接收的屏幕图像,同时下载视频文件,直到所下载的视频文件的长度足够播放,不会由于播放数据不足产生卡屏的现象,提高了信息传输的速率,实现终端之间的同步、无缝播放。The source screen sends the source information (file type), the play progress information, and the address information of the video file to the target screen according to the source of the video file, so that the target screen edge plays the received screen image, and simultaneously The video file is downloaded until the length of the downloaded video file is sufficient to play, and the card screen phenomenon is not generated due to insufficient playing data, thereby improving the rate of information transmission and realizing synchronization and seamless playback between terminals.
其中,步骤C之后还包括:目标屏通知源屏停止获取屏幕图像数据和发送。The step C further includes: the target screen notifying the source screen to stop acquiring the screen image data and transmitting.
通过向源屏发送停止发送屏幕图像的指令,节省资源,提高了数据传输的效率。By sending an instruction to stop the transmission of the screen image to the source screen, resources are saved and the efficiency of data transmission is improved.
其中,步骤C后还包括:目标屏判断所述视频文件数据读取故障时,返回步骤A。The step C further includes: when the target screen determines that the video file data is faulty, the process returns to step A.
通过容错功能,使得系统及时发现错误,及时进行功能恢复,提高了系统容错性能。Through fault tolerance, the system can detect errors in time, perform functional recovery in time, and improve system fault tolerance.
其中,步骤C后还包括:目标屏判断缓存的视频文件数据的播放进度与所述当前播放进度之差小于预先设定的阈值时,返回步骤A。The step C further includes: when the target screen determines that the difference between the playback progress of the cached video file data and the current playback progress is less than a preset threshold, the process returns to step A.
通过容错功能,使得系统及时发现错误,及时进行功能恢复,提高了系统容错性能。Through fault tolerance, the system can detect errors in time, perform functional recovery in time, and improve system fault tolerance.
其中,步骤A前还包括:源屏与目标屏建立共享连接。The step A also includes: establishing a shared connection between the source screen and the target screen.
通过预先建立共享连接,建立起源屏与目标屏的进行多屏共享的基础。The basis for multi-screen sharing between the origin screen and the target screen is established by establishing a shared connection in advance.
本发明还提供了一种实现多屏同步显示的系统,包括源屏与目标屏,The invention also provides a system for realizing multi-screen synchronous display, comprising a source screen and a target screen,
所述源屏包括:The source screen includes:
第一图像处理模块,用于将一视频文件处理为源屏所要播放的屏幕图像;a first image processing module, configured to process a video file as a screen image to be played by the source screen;
屏幕图像获取模块,与第一图像处理模块连接,用于获取源屏所要播放的屏幕图像,并发送出去;和a screen image acquiring module, connected to the first image processing module, configured to acquire a screen image to be played by the source screen, and send the screen image; and
文件属性获取模块,用于获取所述视频文件的地址信息和该视频文件当前播放进度信息,并实时发送出去;a file attribute obtaining module, configured to acquire address information of the video file and current playback progress information of the video file, and send the data in real time;
所述目标屏包括:The target screen includes:
屏幕图像接收模块,用于接收屏幕图像获取模块发送的屏幕图像;a screen image receiving module, configured to receive a screen image sent by the screen image acquiring module;
文件属性接收模块,用于接收文件属性获取模块发送的视频文件的地址信息和当前播放进度信息;a file attribute receiving module, configured to receive address information of the video file sent by the file attribute obtaining module and current playing progress information;
文件获取模块,用于根据所述视频文件的地址信息读取所述视频文件数据;a file obtaining module, configured to read the video file data according to address information of the video file;
第二图像处理模块,用于播放屏幕图像接收模块获取的源屏的屏幕图像,以及在文件获取模块读取到所述视频文件数据后,从文件属性接收模块所接收的当前的播放进度信息所对应的位置播放所述视频文件。a second image processing module, configured to play a screen image of the source screen acquired by the screen image receiving module, and a current playback progress information received by the file attribute receiving module after the file obtaining module reads the video file data The video file is played at the corresponding location.
通过在传输屏幕图像进行快速同步播放的同时,根据所述视频文件的来源下载视频文件,并在下载足够的数据量后,切换到直接播放下载的视频文件,且对应到所实时的播放进度上,即实现多屏共享二次同步,实现播放截屏与播放视频文件本身的无缝对接,且直接播放视频文件保证了高质量播放。从而实现小屏幕装置至大屏幕装置的视频同步、清晰、流畅的播放。By downloading the video file according to the source of the video file while downloading the screen image, and downloading the video file according to the source of the video file, and switching to the directly playing the downloaded video file, and corresponding to the real-time playback progress. That is, the multi-screen sharing secondary synchronization is realized, and the seamless connection between the playback screen capture and the playback video file itself is realized, and the video file is directly played to ensure high-quality playback. Thereby, the video synchronization, clear and smooth playback of the small screen device to the large screen device is realized.
附图说明DRAWINGS
图1为实现多屏同步显示的方法的流程示意图;1 is a schematic flow chart of a method for realizing multi-screen synchronous display;
图2为实现多屏同步显示的系统结构图。FIG. 2 is a structural diagram of a system for realizing multi-screen synchronous display.
具体实施方式detailed description
本发明实施例提供了一种实现多屏同步显示的方法,下面将结合附图,对本发明进行详细描述。如图2示出了本发明实现多屏同步显示的系统结构图,包括源屏10、至少一个目标屏20,这里的源屏10和目标屏20表示具有显示屏的终端,为了描述方便,将具有视频文件源的终端称为源屏,将接收所述视频文件的终端称为目标屏。其中,源屏10包括The embodiment of the invention provides a method for realizing multi-screen synchronous display. The present invention will be described in detail below with reference to the accompanying drawings. FIG. 2 is a structural diagram of a system for implementing multi-screen synchronous display according to the present invention, including a source screen 10 and at least one target screen 20, where the source screen 10 and the target screen 20 represent terminals having a display screen, which will be convenient for description. A terminal having a video file source is referred to as a source screen, and a terminal receiving the video file is referred to as a target screen. Wherein, the source screen 10 includes
第一图像处理模块101,用于对本地视频文件或网络视频文件进行解码,解码出源屏所要播放的图像,即屏幕图像。The first image processing module 101 is configured to decode a local video file or a network video file, and decode an image to be played by the source screen, that is, a screen image.
屏幕图像获取模块102,与第一图像处理模块101连接,用于获取第一图像处理模块101解码出源屏所要播放的屏幕图像,或称为采用抓屏的方式获取所显示的图像,并将获取的屏幕图像发送出去。和The screen image acquisition module 102 is connected to the first image processing module 101 for acquiring a screen image to be played by the first image processing module 101 to decode the source screen, or acquiring the displayed image by using a screen capture method, and The acquired screen image is sent out. with
文件属性获取模块103,用于获取所播放的本地视频文件或网络视频文件的文件属性信息,并发送出去。所述文件属性信息中记载有所播放视频文件的文件类型、对应的文件地址信息及视频文件的播放进度信息,文件属性信息将在后文进行详细描述。The file attribute obtaining module 103 is configured to acquire file attribute information of the played local video file or the network video file, and send the file attribute information. The file attribute information describes the file type of the played video file, the corresponding file address information, and the playback progress information of the video file, and the file attribute information will be described in detail later.
目标屏20包括:The target screen 20 includes:
屏幕图像接收模块201,用于接收屏幕图像获取模块102发送的屏幕图像,提供给第二图像处理模块202。The screen image receiving module 201 is configured to receive the screen image sent by the screen image acquiring module 102 and provide the image to the second image processing module 202.
文件属性接收模块203,用于接收文件属性获取模块103发送的文件属性信息。The file attribute receiving module 203 is configured to receive file attribute information sent by the file attribute obtaining module 103.
文件获取模块204,用于根据文件属性接收模块203获取的文件属性信息中记载的视频文件的文件类型和对应的文件地址信息及视频文件的播放进度信息,到相应的源屏或网络获取本地视频文件或网络视频文件。和The file obtaining module 204 is configured to obtain the local video from the corresponding source screen or the network according to the file type of the video file and the corresponding file address information and the playback progress information of the video file recorded in the file attribute information acquired by the file attribute receiving module 203. File or network video file. with
第二图像处理模块202,用于同步播放屏幕图像接收模块201获取的屏幕图像,以及在文件获取模块204获取到视频文件数据后,切换到从文件属性接收模块所接收的当前的播放进度信息所对应的位置播放所述视频文件。The second image processing module 202 is configured to synchronously play the screen image acquired by the screen image receiving module 201, and after the file obtaining module 204 acquires the video file data, switch to the current playback progress information received from the file attribute receiving module. The video file is played at the corresponding location.
如图1示出了本发明提供的实现多屏同步显示的方法,包括以下步骤:FIG. 1 illustrates a method for implementing multi-screen synchronous display provided by the present invention, including the following steps:
S100: 源屏与目标屏建立共享连接。S100: The source screen establishes a shared connection with the target screen.
该步骤可以是源屏发送同步显示请求,当接收到目标屏发送的确认的响应信息后,与目标屏建立连接,也可以是由目标屏发起同步显示请求。The step may be that the source screen sends a synchronous display request, and after receiving the acknowledged response information sent by the target screen, establishing a connection with the target screen, or may initiate a synchronous display request by the target screen.
S110: 源屏采用抓屏的方式实时向目标屏传输屏幕图像数据,并向目标屏传输视频文件的属性信息。所述抓屏技术为现有技术,故不再赘述。S110: The source screen transmits screen image data to the target screen in real time by means of screen capture, and transmits attribute information of the video file to the target screen. The screen capture technology is prior art and will not be described again.
源屏10所播放的视频文件的属性信息包括:文件类型、文件地址信息以及实时的播放进度信息,其中播放进度信息可以是视频文件的时间信息。其中,为了减小传输的数据量,文件类型、文件地址信息可以仅传输1次。The attribute information of the video file played by the source screen 10 includes: a file type, file address information, and real-time playback progress information, wherein the play progress information may be time information of the video file. Among them, in order to reduce the amount of data transferred, file type and file address information can be transmitted only once.
源屏10播放的视频文件如果来自网络资源,则上述文件地址信息是网络资源对应的链接地址,若该视频文件为源屏10的本地资源,则上述文件地址信息是其存放该视频文件的共享的地址,如包括存放所述视频文件的文件夹目录。If the video file played by the source screen 10 is from a network resource, the file address information is a link address corresponding to the network resource. If the video file is a local resource of the source screen 10, the file address information is a share of the video file. The address, such as the folder directory where the video file is stored.
在本实施例中,使用文件信息中的文件类型来标识视频文件的来源,视频文件属性信息中的文件类型信息,可以采用特征值方式,例如,特征值为“0”代表文件类型为网络文件,即,视频文件来源于网络,特征值为“1”代表文件类型为本地文件,即,视频文件来源于源屏10的本地文件,如果文件类型为网络文件,则视频文件属性信息中还包括网络地址信息;如果文件类型为本地文件,则视频文件属性信息中还包括该视频文件存放的地址信息(如文件所存放的文件夹信息)以及该视频文件的共享信息,如涉及共享的校验信息(如读取该文件所需的密码等)。In this embodiment, the file type in the file information is used to identify the source of the video file, and the file type information in the video file attribute information may be in a feature value manner. For example, the feature value is “0” to represent the file type as a network file. That is, the video file is derived from the network, and the feature value of “1” represents that the file type is a local file, that is, the video file is derived from the local file of the source screen 10. If the file type is a network file, the video file attribute information is also included. Network address information; if the file type is a local file, the video file attribute information also includes address information (such as folder information stored in the file) stored in the video file and shared information of the video file, such as verification related to sharing Information (such as the password required to read the file, etc.).
S120: 目标屏实时接收所述屏幕图像数据并进行播放,以实现与源屏的同步显示。另一方面,目标屏在持续接收所述屏幕图像数据并进行播放的过程中,目标屏根据接收的所述视频文件属性信息,判断源屏10当前正在播放的视频文件的文件类型,并根据该文件类型读取对应的文件地址信息,然后根据视频文件的播放进度信息到对应的文件地址读取所述播放进度以后的部分视频文件的数据并缓存。S120: The target screen receives the screen image data in real time and plays it to realize synchronous display with the source screen. On the other hand, in the process of continuously receiving the screen image data and playing the target screen, the target screen determines the file type of the video file currently being played by the source screen 10 according to the received video file attribute information, and according to the The file type reads the corresponding file address information, and then reads and caches the data of the partial video file after the playback progress according to the playback progress information of the video file to the corresponding file address.
如果目标屏解析所述视频文件的文件类型为网络文件,目标屏根据视频文件属性信息中的网络地址信息,从该网络地址处读取所需的视频文件并缓存,这个过程还包括与该网络地址对应的服务器建立连接的过程;如果目标屏解析所述视频文件的文件类型为本地文件,则去存放共享的视频文件的存放地址处读取所需的视频文件并缓存。并且,如上所述,根据接收的文件的播放进度信息,为了节省缓存的空间,在读取视频文件时,读取从当前播放进度之后的文件数据开始进行下载。If the target screen parses the file type of the video file as a network file, the target screen reads the required video file from the network address and caches according to the network address information in the video file attribute information, and the process further includes The process of establishing a connection by the server corresponding to the address; if the target screen parses the file type of the video file as a local file, the desired video file is read and cached at the storage address where the shared video file is stored. Further, as described above, in order to save the buffer space according to the playback progress information of the received file, when the video file is read, the reading is started from the file data after the current playback progress.
S130: 目标屏判断所缓存的视频文件对应的播放进度比当前正在播放的进度超过一定进度的阀值时,即所缓存的视频文件包括当前及后续若干帧数据时,则由播放所接收的抓屏得到的屏幕图像数据切换到播放所缓存的视频文件,且根据当前播放进度播放相同进度的视频文件数据。S130: The target screen determines that the playback progress of the cached video file exceeds the threshold of the current progress when the currently playing progress exceeds a certain progress threshold, that is, when the buffered video file includes current and subsequent frame data, the screen capture received by the play is obtained. The screen image data is switched to play the cached video file, and the same progress video file data is played according to the current playback progress.
当目标屏的缓存中视频文件的进度与所接收的视频文件的进度差值大于某一阈值时,目标屏停止接收源屏信息,根据所接收的视频文件的播放进度信息,直接播放缓存中的视频文件,并且,向源屏发送相应的信息,中止目标屏的抓屏发送。When the progress of the video file in the cache of the target screen and the progress of the received video file are greater than a certain threshold, the target screen stops receiving the source screen information, and directly plays the cache according to the playback progress information of the received video file. The video file, and the corresponding information is sent to the source screen, and the screen capture of the target screen is suspended.
其中,缓存中所存放的视频文件长度与下载速度和下载时间有关,随着下载时间的增加,下载速度也会加快,如果缓存中所存放的视频文件长度,即当前播放进度以后的播放信息如果比较短时,直接播放缓存中的视频信息会出现卡屏现象,为了直接从缓存中播放视频信息,需要目标屏缓存中视频文件的进度与所接收的视频文件的进度差值大于某一阈值时,该阈值为预先设定值,可根据播放速度、下载速度进行设定。The length of the video file stored in the cache is related to the download speed and the download time. As the download time increases, the download speed will also increase. If the length of the video file stored in the cache, that is, the playback information after the current playback progress, When the video information in the cache is directly played, the card screen phenomenon occurs. In order to play the video information directly from the cache, the progress of the video file in the target screen buffer and the progress of the received video file are greater than a certain threshold. The threshold is a preset value and can be set according to the playback speed and the download speed.
当目标屏的中心处理装置判断出当前播放的屏幕图像信息在其缓存中已经存在,并且缓存中所存储的该屏幕图像信息进度以后的信息满足播放的阈值信息,即,目标屏的缓存中视频文件的进度与所接收的视频文件的进度差值大于该阈值,则目标屏终止播放抓取的屏幕,播放视频文件本身,使得目标屏播放缓存中的视频文件进度与抓取屏幕播放的文件进度无缝对接,并且此时通知源屏10终止抓取并传输屏幕图像信息给目标屏20。最终实现源屏至目标屏的视频同步、清晰、流畅的播放。When the central processing device of the target screen determines that the currently played screen image information already exists in its cache, and the information after the progress of the screen image information stored in the cache satisfies the threshold information for playing, that is, the video in the cache of the target screen If the progress of the file and the progress of the received video file are greater than the threshold, the target screen terminates the playback of the captured screen, and the video file itself is played, so that the progress of the video file in the target screen playback buffer and the progress of the file played on the capture screen are performed. Seamless docking, and at this time the notification source screen 10 terminates the capture and transmission of the screen image information to the target screen 20. Finally, the video from the source screen to the target screen is synchronized, clear and smooth.
由上可以看出,在屏幕播放的视频文件共享的开始,采用抓屏传输的方式可以保证源屏与目标屏所播放视频文件的快速共享,而由于源屏与目标屏大小可能不同,分辨率不同,当源屏远远小于目标屏大小时(例如源屏是PAD、目标屏为电视),这种方式会导致目标屏播放画面不清楚。而通过后台由目标屏去判断并读取所播放的视频文件,并通过播放进度信息同步切换到播放该视频文件的相应数据,实现目标屏与源屏播放相同的内容,并且目标屏显示的为较清晰的视频。It can be seen from the above that at the beginning of the video file sharing played on the screen, the screen capture transmission mode can ensure the fast sharing of the video files played by the source screen and the target screen, and the resolution may be different due to the size of the source screen and the target screen. Differently, when the source screen is much smaller than the target screen size (for example, the source screen is PAD and the target screen is TV), this method will cause the target screen to play unclear. The target screen is judged and read by the target screen, and the playback progress information is synchronously switched to play the corresponding data of the video file, so that the target screen and the source screen play the same content, and the target screen displays Clearer video.
另外,当目标屏缓存的视频文件数据小于一阈值时,则目标屏再向源屏发送相应信息,请求源屏再继续抓屏并发送至目标屏,并返回步骤S110。例如涉及目标屏的网络故障,导致目标屏连接网络的信号不好时导致缓存的视频播放完毕的情况。In addition, when the video file data cached by the target screen is less than a threshold, the target screen sends corresponding information to the source screen, requests the source screen to continue to capture the screen and sends the image to the target screen, and returns to step S110. For example, a network failure involving the target screen causes the cached video to finish playing when the signal of the target screen connected to the network is not good.
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,例如,可以将不同功能的模块通过一个集成芯片来实现等,均在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本实用新型的保护范围之内。The above is only the preferred embodiment of the present invention, and is not intended to limit the present invention. For example, modules of different functions may be implemented by an integrated chip, etc., all of which are within the spirit and principles of the present invention. Any modifications, equivalent substitutions, improvements, etc., are intended to be included within the scope of the present invention.

Claims (9)

  1. 一种 实现多屏同步显示的方法,其特征在于,包括: A method for realizing multi-screen synchronous display, comprising:
    A、源屏播放一视频文件,并获取屏幕图像数据发送至目标屏进行同步播放;A. The source screen plays a video file, and the screen image data is acquired and sent to the target screen for synchronous playback;
    B、源屏将所播放视频文件的地址信息和该视频文件的当前播放进度信息实时发送至目标屏;B. The source screen sends the address information of the played video file and the current playback progress information of the video file to the target screen in real time;
    C、所述目标屏根据所述地址信息读取所述视频文件数据,并从所接收的当前的播放进度信息所对应的位置进行播放。C. The target screen reads the video file data according to the address information, and plays the position corresponding to the received current playback progress information.
  2. 根据权利要求1所述的方法,其特征在于,步骤B所述地址信息包括:存放所述视频文件的网络链接地址,或存放所述视频文件源屏的存储地址。 The method according to claim 1, wherein the address information in step B comprises: storing a network link address of the video file, or storing a storage address of the video file source screen.
  3. 根据权利要求1所述的方法,其特征在于,步骤C所述读取所述视频文件数据为:读取视频文件在所述当前播放进度之后的数据。The method according to claim 1, wherein the reading the video file data in step C is: reading data of the video file after the current playback progress.
  4. 根据权利要求3所述的方法,其特征在于步骤C读取所述视频文件数据后还包括:对所述视频文件数据进行缓存;The method according to claim 3, wherein the step C after the reading of the video file data further comprises: buffering the video file data;
    所述并从所接收的当前的播放进度信息所对应的位置进行播放包括:判断缓存的视频文件数据的可播放进度与所述当前播放进度之差大于预先设定的阈值时,将缓存的所述视频文件数据从对应当前播放进度的位置进行播放。The playing and the playing from the position corresponding to the received current playing progress information includes: determining that the cached video file data has a difference between the playable progress and the current playing progress is greater than a preset threshold, and the cached The video file data is played from the position corresponding to the current playback progress.
  5. 根据权利要求1所述的方法,其特征在于,在步骤C之后还包括:目标屏通知源屏停止获取屏幕图像数据和发送。The method according to claim 1, further comprising, after step C, the target screen notifying the source screen to stop acquiring screen image data and transmitting.
  6. 根据权利要求1或5所述的方法,其特征在于,步骤C后还包括:目标屏判断所述视频文件数据读取故障时,返回步骤A。The method according to claim 1 or 5, further comprising the step of: returning to step A when the target screen determines that the video file data is faulty.
  7. 根据权利要求1所述的方法,其特征在于,步骤C后还包括:目标屏判断缓存的视频文件数据的可播放进度与所述当前播放进度之差小于预先设定的阈值时,返回步骤A。The method according to claim 1, wherein after the step C, the target screen determines that the difference between the playable progress of the cached video file data and the current playback progress is less than a preset threshold, and returns to step A. .
  8. 根据权利要求1所述的方法,其特征在于,步骤A前还包括:源屏与目标屏建立共享连接。The method according to claim 1, wherein before step A, the method further comprises: establishing a shared connection between the source screen and the target screen.
  9. 一种实现多屏同步显示的系统,包括源屏与目标屏,其特征在于,A system for realizing multi-screen synchronous display, comprising a source screen and a target screen, wherein
    所述源屏包括:The source screen includes:
    第一图像处理模块,用于将一视频文件处理为源屏所要播放的屏幕图像;a first image processing module, configured to process a video file as a screen image to be played by the source screen;
    屏幕图像获取模块,与第一图像处理模块连接,用于获取源屏所要播放的屏幕图像,并发送出去;和a screen image acquiring module, connected to the first image processing module, configured to acquire a screen image to be played by the source screen, and send the screen image; and
    文件属性获取模块,用于获取所述视频文件的地址信息和该视频文件当前播放进度信息,并实时发送出去;a file attribute obtaining module, configured to acquire address information of the video file and current playback progress information of the video file, and send the data in real time;
    所述目标屏包括:The target screen includes:
    屏幕图像接收模块,用于接收屏幕图像获取模块发送的屏幕图像;a screen image receiving module, configured to receive a screen image sent by the screen image acquiring module;
    文件属性接收模块,用于接收文件属性获取模块发送的视频文件的地址信息和当前播放进度信息;a file attribute receiving module, configured to receive address information of the video file sent by the file attribute obtaining module and current playing progress information;
    文件获取模块,用于根据所述视频文件的地址信息读取所述视频文件数据;a file obtaining module, configured to read the video file data according to address information of the video file;
    第二图像处理模块,用于播放屏幕图像接收模块获取的源屏的屏幕图像,以及在文件获取模块读取到所述视频文件数据后,从文件属性接收模块所接收的当前的播放进度信息所对应的位置播放所述视频文件。a second image processing module, configured to play a screen image of the source screen acquired by the screen image receiving module, and a current playback progress information received by the file attribute receiving module after the file obtaining module reads the video file data The video file is played at the corresponding location.
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