WO2006097226A1 - Communication terminals that vary a video stream based on how it is displayed - Google Patents

Communication terminals that vary a video stream based on how it is displayed Download PDF

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Publication number
WO2006097226A1
WO2006097226A1 PCT/EP2006/002107 EP2006002107W WO2006097226A1 WO 2006097226 A1 WO2006097226 A1 WO 2006097226A1 EP 2006002107 W EP2006002107 W EP 2006002107W WO 2006097226 A1 WO2006097226 A1 WO 2006097226A1
Authority
WO
WIPO (PCT)
Prior art keywords
data stream
video data
communication terminal
display characteristic
displayed
Prior art date
Application number
PCT/EP2006/002107
Other languages
French (fr)
Inventor
Simon Lessing
Emil Hansson
Original Assignee
Sony Ericsson Mobile Communications Ab
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Sony Ericsson Mobile Communications Ab filed Critical Sony Ericsson Mobile Communications Ab
Priority to EP06707469A priority Critical patent/EP1859621B1/en
Priority to DE602006002373T priority patent/DE602006002373D1/en
Priority to CN2006800080777A priority patent/CN101138241B/en
Publication of WO2006097226A1 publication Critical patent/WO2006097226A1/en

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/23Processing of content or additional data; Elementary server operations; Server middleware
    • H04N21/234Processing of video elementary streams, e.g. splicing of video streams or manipulating encoded video stream scene graphs
    • H04N21/2343Processing of video elementary streams, e.g. splicing of video streams or manipulating encoded video stream scene graphs involving reformatting operations of video signals for distribution or compliance with end-user requests or end-user device requirements
    • H04N21/234354Processing of video elementary streams, e.g. splicing of video streams or manipulating encoded video stream scene graphs involving reformatting operations of video signals for distribution or compliance with end-user requests or end-user device requirements by altering signal-to-noise ratio parameters, e.g. requantization
    • 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
    • H04N21/45Management operations performed by the client for facilitating the reception of or the interaction with the content or administrating data related to the end-user or to the client device itself, e.g. learning user preferences for recommending movies, resolving scheduling conflicts
    • H04N21/462Content or additional data management, e.g. creating a master electronic program guide from data received from the Internet and a Head-end, controlling the complexity of a video stream by scaling the resolution or bit-rate based on the client capabilities
    • H04N21/4621Controlling the complexity of the content stream or additional data, e.g. lowering the resolution or bit-rate of the video stream for a mobile client with a small screen
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/60Network structure or processes for video distribution between server and client or between remote clients; Control signalling between clients, server and network components; Transmission of management data between server and client, e.g. sending from server to client commands for recording incoming content stream; Communication details between server and client 
    • H04N21/63Control signaling related to video distribution between client, server and network components; Network processes for video distribution between server and clients or between remote clients, e.g. transmitting basic layer and enhancement layers over different transmission paths, setting up a peer-to-peer communication via Internet between remote STB's; Communication protocols; Addressing
    • H04N21/637Control signals issued by the client directed to the server or network components
    • H04N21/6377Control signals issued by the client directed to the server or network components directed to server
    • H04N21/6379Control signals issued by the client directed to the server or network components directed to server directed to encoder, e.g. for requesting a lower encoding rate
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/14Systems for two-way working
    • H04N7/141Systems for two-way working between two video terminals, e.g. videophone
    • H04N7/148Interfacing a video terminal to a particular transmission medium, e.g. ISDN

Definitions

  • the present invention generally relates to the field of communications, and more particularly to apparatus and methods for providing video telephony.
  • Wireless communication terminals have evolved to include increasingly more functionality.
  • some wireless communication terminals provide video telephony by which users of two terminals can both see and hear one another.
  • Video telephony capable terminals can include a camera and microphone that generates a respective video stream and audio stream, and which are communicated over a wireless interface to another one of the terminals.
  • Providing video telephony over a wireless interface can be difficult because of the amount of data bandwidth that can be needed to send and receive real time/near-real time video audio streams over wireless communication interfaces that can have significant bandwidth constraints, hi some video telephony applications, wireless communication terminals need to both send and receive real time video streams, and which can include 10 frames per second.
  • the resulting data bandwidth requirements on the wireless interface can exceed those needed for voice only calls by a multiple of about 5 to 10 times.
  • Such high data bandwidth may not be readily available when the air interface is shared among many wireless communication terminals, such within a service area of a cellular base station in a cellular communication system. Accordingly, providing video telephony over an efficiently utilized wireless communication interface continues to be a challenge.
  • a communication terminal includes a communication module, a camera device, a display device, and a controller.
  • the communication module receives a display characteristic command and an input video data stream from a remotely located other communication terminal and sends an output video data stream thereto.
  • the camera device generates an initial video data stream based on incident light.
  • the display device displays a received input video data stream from the remote communication terminal.
  • the controller generates the output video data stream based on the initial video data stream and a received display characteristic command from the remote communication terminal.
  • the display characteristic command can be indicative of a resolution at which the output video data stream will be displayed on the remote communication terminal.
  • the controller can vary a resolution of the output video data stream responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
  • the controller can compress the initial video data stream to generate the output video data stream using a compression rate that varies responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
  • the controller can compress the initial video data stream to generate the output video data stream using a lossy data compression algorithm that provides a variable quality of video.
  • the quality of video can be varied responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
  • the controller can vary a frame rate of the output video data stream responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
  • the received display characteristic command can be indicative of a frame rate at which the output video data stream will be displayed on the remote communication terminal.
  • the controller can vary a frame rate of the output video data stream responsive to the indication by the received display characteristic command of the frame rate at which the output video data stream will be displayed on the remote communication terminal.
  • the controller can vary a resolution of the output video data stream relative to the initial video data stream responsive to the indication by the received display characteristic command of the frame rate at which the output video data stream will be displayed on the remote communication terminal.
  • the received display characteristic command can be indicative of whether the output video data stream will be displayed on the remote communication terminal.
  • the controller can selectively transmit or not transmit the output video data stream responsive to the indication by the received display characteristic command of whether the output video data stream will be displayed on the remote communication terminal.
  • the communication module can include a wireless communication module that is configured to receive the display characteristic command and the input video data stream over a wireless communication interface from the remote communication terminal, and configured to transmit the output video data stream thereto over the wireless communication interface.
  • the controller can vary a maximum amount of data bandwidth of the wireless communication interface that is used to transmit the output video data stream to the remote communication terminal responsive to the received display characteristic command.
  • the received display characteristic command is indicative of a resolution at which the output video data stream will be displayed on the remote communication terminal.
  • the controller can vary a resolution of the output video data stream responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
  • the received display characteristic command is indicative of a frame rate at which the output video data stream will be displayed on the remote communication terminal.
  • the controller can vary a frame rate of the output video data stream that is transmitted across the wireless interface responsive to the indication by the received display characteristic command of the frame rate at which the output video data stream will be displayed on the remote communication terminal.
  • the received display characteristic command is indicative of whether the output video data stream will be displayed on the remote communication terminal.
  • the controller can selectively transmit or not transmit the output video data stream across the wireless interface responsive to the indication by the received display characteristic command of whether the output video data stream will be displayed on the remote communication terminal.
  • the communication module is configured to receive an input audio data stream from the remote communication terminal and to send an output audio data stream thereto.
  • the terminal can also include a microphone that is configured to generate the output audio data stream responsive to incident sound, and a speaker that is configured to generate sound responsive to the input audio data stream.
  • a communication terminal includes a communication module, a camera device, a display device, and a controller.
  • the communication module receives an input video data stream from a remotely located other communication terminal and sends a display characteristic command and an output video data stream thereto.
  • the camera device generates the output video data stream based on incident light.
  • the display device displays a received input video data stream from the remote communication terminal according to a variable video resolution and/or a variable video frame rate.
  • the controller is configured to control the display device to display the input video data stream with a particular one of the variable video resolutions and/or a particular one of the variable video frame rates, and to generate the display characteristic command so that it is indicative to the remote communication terminal of the particular video resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
  • the terminal further includes a user interface through which a user can generate a command to change a size of a portion of the display device that is used to display the input video data stream.
  • the controller can vary the particular video resolution and/or the particular video frame rate at which the display device displays the input video data stream responsive to the indication from a user via the user interface, and can generate the display characteristic command so that it is indicative to the remote communication terminal of the particular video resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
  • the controller can command the remote communication terminal through the display characteristic command to compress the video data stream sent to the communication terminal using a compression rate that varies responsive to the indication by the display characteristic command of the particular video resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
  • the controller can command the remote communication terminal through the display characteristic command to compress the video data stream sent to the communication terminal using a lossy data compression algorithm that provides a variable quality of video which is varied responsive to the indication by the display characteristic command of the particular video resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
  • the controller can command the remote communication terminal through the display characteristic command to vary a video frame rate of the video data stream that is sent to the communication terminal as the input video data stream responsive to the indication by the display characteristic command of the particular resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
  • the controller can selectively display or not display the input video data stream on the display device responsive to a command from a user, and can command the remote communication terminal through the display characteristic command to stop sending the input video data stream when the controller does not display the input video data stream on the display device.
  • the communication module comprises a wireless communication module that is configured to receive the input video data stream from the remote communication terminal over a wireless communication interface and to transmit the display characteristic command over the wireless communication interface.
  • the controller can command the remote communication terminal through the display characteristic command to vary a maximum amount of data bandwidth of the wireless communication interface that it uses to transmit the video data stream to the communication module of the communication terminal.
  • Figure 1 is a schematic block diagram illustrating a wireless communication terminals and a cellular communication system that provide video telephony in accordance with some embodiments of the present invention.
  • Figures 2a-c illustrate different video telephony displays on two wireless communication terminals and the associated data communicated therebetween in accordance with some embodiments of the present invention.
  • FIG. 3 is a flowchart illustrating operations for varying characteristics of a video data stream from a remote wireless communication terminal using a display characteristic command, in accordance with some embodiments of the present invention.
  • FIG. 4 is a flowchart illustrating operations for varying characteristics of a video data stream that is transmitted to a remote wireless communication terminal responsive to a display characteristic command that is received therefrom, in accordance with some embodiments of the present invention.
  • Embodiments according to the present invention are described with reference to block diagrams and/or operational illustrations of methods and communication terminals. It is to be understood that each block of the block diagrams and/or operational illustrations, and combinations of blocks in the block diagrams and/or operational illustrations, can be implemented by radio frequency, analog and/or digital hardware, and/or program instructions. These program instructions may be provided to a controller, which may include one or more general purpose processors, special purpose processors, ASICs, and/or other programmable data processing apparatus, such that the instructions, which execute via the controller and/or other programmable data processing apparatus, create means for implementing the functions/acts specified in the block diagrams and/or operational block or blocks.
  • a controller may include one or more general purpose processors, special purpose processors, ASICs, and/or other programmable data processing apparatus, such that the instructions, which execute via the controller and/or other programmable data processing apparatus, create means for implementing the functions/acts specified in the block diagrams and/or operational block or blocks.
  • the functions/acts noted in the blocks may occur out of the order noted in the operational illustrations.
  • two blocks shown in succession may in fact be executed substantially concurrently or the blocks may sometimes be executed in the reverse order, depending upon the functionality/acts involved.
  • a “communication terminal” includes, but is not limited to, a terminal that is configured to receive/transmit communication signals via a wireline connection, such as via a public-switched telephone network (PSTN), digital subscriber line (DSL), digital cable, or another data connection/network, and/or via a wireless interface with, for example, a cellular network, a wireless local area network (WLAN), and/or another communication terminal.
  • PSTN public-switched telephone network
  • DSL digital subscriber line
  • WLAN wireless local area network
  • wireless terminal When the communication terminal is configured to communicate over a wireless interface, it is referred to herein as a “wireless communication terminal” and a “wireless terminal.”
  • wireless terminals include, but are not limited to, a cellular telephone, personal data assistant (PDA), pager, and/or a computer that is configured to communicate data over a wireless communication interface that can include a cellular telephone interface, a Bluetooth interface, a wireless local area network interface (e.g., 802.11), another RF communication interface, and/or an optical/infra-red communication interface.
  • FIG. 1 is a schematic block diagram of a wireless communication system 100 that includes two wireless terminals 102, 104 that are configured to communicate data with one another over a direct wireless communication interface 106 therebetween, over another wireless communication interface 108 through one or more cellular base stations 110a-b, and/or over another wireless communication interface 112 through a wireless local area network (WLAN) router 114.
  • the wireless terminals 102, 104 include a display device 120, a user interface 122, a camera device 124, a controller 126, and a communication module 128.
  • the camera device 124 is configured to generate a video data stream based on incident light.
  • the user interface 122 can include a keypad, keyboard, touchpad and/or other user input device.
  • the user 122 interface can also include a microphone that is configured to generate an audio data stream responsive to incident sound, and a speaker that generates sound responsive to an input audio data stream.
  • the communication module 128 is configured to communicate data over one or more of the wireless interfaces 106, 108, and/or 112 to another remote wireless terminal 102,104.
  • the communication module 128 can include a cellular communication module, a Bluetooth module, and/or a WLAN module.
  • a cellular communication module the wireless terminals 102, 104 can communicate via the base stations 110a-b using one or more cellular communication protocols such as, for example, Advanced Mobile Phone Service (AMPS), ANSI- 136, Global Standard for Mobile (GSM) communication, General Packet Radio Service (GPRS), enhanced data rates for GSM evolution (EDGE), code division multiple access (CDMA), wideband-CDMA, CDMA2000, and Universal Mobile Telecommunications System (UMTS).
  • AMPS Advanced Mobile Phone Service
  • GSM Global Standard for Mobile
  • GPRS General Packet Radio Service
  • EDGE enhanced data rates for GSM evolution
  • CDMA code division multiple access
  • CDMA2000 Wideband-CDMA2000
  • UMTS Universal Mobile Telecommunications System
  • the cellular base stations 110a-b are connected to a Mobile Telephone Switching Office (MTSO) 130 wireless network, which, in turn, is connected to a PSTN 132 and/or another network.
  • MTSO Mobile Telephone Switching Office
  • the wireless terminal 102,104 can communicate via an ad-hoc network through the direct interface 106.
  • the wireless terminal 102,104 can communicate through the WLAN router 114 using a communication protocol that may include, but is not limited to, 802.11a, 802.11b, 802.1 Ie, 802.1 Ig, 802. Hi.
  • the wireless terminals 102,104 are configured to transmit and/or receive a video data stream with one another and/or with another communication terminal that may be communicatively coupled thereto through, for example the MTSO 130 and the PSTN 132 and/or another network, hi some embodiments, the wireless terminals 102, 104 are configured to establish a video telephony connection with one another in which they transmit the video data stream from their respective cameras 124 and receive and display on their respective display devices 120 the received video data stream.
  • the wireless terminals 102, 104 may also exchange an audio data stream that is generated by a microphone and played through a speaker in their respectively user interfaces 122. Accordingly, when a video telephony connection is established through the wireless terminals 102, 104, users may both see and hear one another.
  • a wireless terminals that is receiving a video data stream from another wireless terminal informs that other wireless terminal whether or not that video data stream is being displayed, and, if displayed, it informs the other wireless terminal of one or more characteristics associated with how the video data stream is displayed.
  • the display characteristics can include an indication of what video resolution (e.g., lines of video per frame, number of pixels, and/or size indication) and/or what video frame rate is used to display the video data stream on the receiving wireless terminal.
  • the display characteristics can be communicated from the displaying wireless terminal to the transmitting wireless terminal through a display characteristic command. These display characteristics may vary over time responsive to, for example, a user command through the user interface 122. Accordingly, as the display characteristics change over time at the receiving wireless terminal, it can communicate the updated display characteristics to the transmitting wireless terminal.
  • the transmitting wireless terminal can then selectively transmit or not transmit the video data stream, and can vary one or more characteristics of the transmitted video data stream based on the received display characteristic command.
  • the transmitting wireless terminal may vary the video resolution, video frame rate, compression rate, and/or quality of video that is transmitted to the receiving wireless terminal based on the indication through the display characteristic command of whether and/or how the video data stream will be, or is being, displayed.
  • the receiving wireless terminal can coordinate with the transmitting wireless terminal to optimize the amount of data that is used in the video data stream based on whether and/or how it is to be displayed, and they may thereby increase the efficiency with which they use the data bandwidth of the wireless interfaces 106, 108, and/or 112.
  • FIG. 2a-c An exemplary embodiment will now be described with reference to the block diagram and associated methods illustrated in Figures 2a-c, and by which the wireless terminals 102, 104 establish a video telephony connection therebetween through which users can exchange real time/near real time video and voice.
  • the wireless terminals 102, 104 may initiate the video telephony connection by exchanging display characteristic commands that are indicative of how a received video data stream will be displayed.
  • the wireless terminals 102, 104 respond to the display characteristic command from other terminal by adjusting the video resolution (i.e., display size), compression rate, and/or quality of video that it transmits.
  • wireless terminals 102, 104 initially exchange voice data streams and full video.
  • wireless terminal 102 displays a large image of the video data stream received from wireless terminal 104 (VIDEO 2) and a small image of the video data stream that is locally generated by the camera 124 (VIDEO 1).
  • the local VIDEO 1 may be displayed in an area of the display device 120 that overlies the VIDEO 2 display area (e.g., a picture-in- picture display format).
  • wireless terminal 104 displays a large image of the video data stream received from wireless terminal 102 (VIDEO 1) and a small image of the video data stream that is locally generated by the camera 124 (VE)EO 2).
  • a user commands the wireless terminal 102 to swap where the local VIDEO 1 and remote VIDEO 2 data streams are displayed.
  • the user can obtain an enlarged view of VIDEO 1 which may provide a better appreciation of how it may appear to another user at wireless terminal 104.
  • the local VIDEO 1 is then displayed in the larger area of the display 120 and the remote VIDEO 2 is displayed in the smaller area of the display 120.
  • the wireless terminal 102 also notifies the wireless terminal 104 through the display characteristic command that the VIDEO 2 which it transmits will be displayed in a smaller area.
  • the wireless terminal 104 responds to the change in display characteristics by modifying the VIDEO 2 data stream.
  • the characteristics of the VIDEO 2 data stream that can be modified by the controller 126 in wireless terminal 104 can include, but are not limited to, video resolution, video frame rate, compression rate, and/or other video quality.
  • the controller 126 in wireless terminal 104 can vary the resolution of the transmitted VIDEO 2 data stream responsive to the display characteristic command. Consequently, the controller 126 in wireless terminal 104 can increase the resolution of the transmitted VIDEO 2 when the display characteristic command indicates that VIDEO 2 will be displayed on a larger area of the display 120 in wireless terminal 102, and can decrease the resolution when VIDEO 2 will be displayed on a smaller area at wireless terminal 102.
  • the controller 126 in wireless terminal 104 may decrease the frame rate of the transmitted VIDEO 2 data stream when the display characteristic command indicates that VIDEO 2 will be displayed on a larger area of the display 120 in wireless terminal 102, and can decrease the video frame rate when VIDEO 2 will be displayed on a smaller area at wireless terminal 102.
  • the controller 126 in wireless terminal 104 may use a lossy data compression algorithm that provides a variable quality of video (e.g., vary the amount of information in the video) responsive to the display characteristic command.
  • a lossy data compression algorithm that provides a variable quality of video (e.g., vary the amount of information in the video) responsive to the display characteristic command.
  • the video data stream from the camera 124 in wireless terminal 104 can be use a lower compression rate with a corresponding higher video quality when the display characteristic command indicates that VIDEO 2 will be displayed on a larger area of the display 120 in wireless terminal 102, and can use a higher compression rate with a corresponding lower video quality when VIDEO 2 will be displayed on a smaller area at wireless terminal 102.
  • the lossy data compression algorithm can include, but is not limited to, MPEP (moving pictures experts group) and JPEG (joint photographic experts group) data compression algorithms.
  • a user commands the wireless terminal 102 to stop displaying VIDEO 2 and only display VIDEO 1.
  • the user may thereby obtain an unobstructed and/or larger view of the VIDEO 1 that is being transmitted to the remote wireless terminal 104.
  • the controller 126 in wireless terminal 102 notifies the wireless terminal 104 through the display characteristic command that the VIDEO 2 is not being displayed at wireless terminal 102.
  • the controller 126 in wireless terminal 104 responds to the notice by stopping its transmission of the VIDEO 2 data stream, while continuing to transmit the voice data stream.
  • the controller 126 If the user subsequently commands the wireless terminal 102 to display VIDEO 2, the controller 126 notifies the wireless terminal 104 through the display characteristic command that the VIDEO 2 will be displayed at wireless terminal 102, and the controller 126 in wireless terminal 104 can respond to the notice by resuming its transmission of VIDEO 2.
  • the wireless terminals 102, 104 may setup the video telephony connection by coordinating with each other to optimize the amount of data that is used in the transmitted video data stream based whether and/or how it is to be displayed. Then, as one or both the wireless terminals 102, 104 changes how it displays received video, an indication of that change can be coordinated with the other wireless terminal 102, 104 to again optimize the amount of data that is used in the transmitted video data stream.
  • FIG. 3 is a flowchart that illustrates operations for varying the characteristics of a video data stream that is received from a remote transmitting communication terminal using a display characteristic command.
  • a communication terminal that is to receive video sends a display characteristics command to the remote transmitting communication terminal which characterize how a received video data stream will be displayed on the receiving terminal.
  • the receiving terminal receives the video data stream from the transmitting terminal.
  • the receiving terminal receives a command from a user to change how the received video data stream is displayed thereon.
  • the receiving terminal modifies how it displays the received video data stream.
  • the receiving terminal sends a display characteristics command that notifies the transmitting terminal of the modified characteristics with which the video data stream will be displayed by the receiving terminal.
  • FIG. 4 is a flowchart that illustrates operations for varying the characteristics of a video data stream that a transmitting terminal transmits to a remote receiving terminal.
  • the transmitting terminal receives from the remote receiving terminal a display characteristics command which characterize how a received video data stream will be displayed on the remote receiving terminal.
  • the transmitting terminal transmits a video data stream with first characteristics to the receiving terminal.
  • the first characteristics of the video data stream can include, video resolution, video frame rate, compression rate, and/or video quality.
  • the transmitting terminal receives a display characteristics command that indicates a modification to how the transmitted video data stream will displayed by the receiving terminal.
  • the transmitting terminal transmits the video data stream with second characteristics that are different than the first characteristics.
  • the transmitting terminal can vary, for example, the video resolution, video frame rate, compression rate, and/or video quality of the transmitted video data stream.

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  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Databases & Information Systems (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Two-Way Televisions, Distribution Of Moving Picture Or The Like (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

A communication terminal includes a communication module, a camera device, a display device, and a controller. The communication module receives a display characteristic command and an input video data stream from a remotely located other communication terminal and sends an output video data stream thereto. The camera device generates an initial video data stream based on incident light. The display device displays a received input video data stream from the remote communication terminal. The controller generates the output video data stream based on the initial video data stream and a received display characteristic command from the remote communication terminal.

Description

COMMUNICATION TERMINALS THAT VARY A VIDEO STREAM BASED ON HOW IT IS DISPLAYED
FIELD OF THE INVENTION
[0001] The present invention generally relates to the field of communications, and more particularly to apparatus and methods for providing video telephony.
BACKGROUND OF THE INVENTION
[0002] Wireless communication terminals have evolved to include increasingly more functionality. For example, some wireless communication terminals provide video telephony by which users of two terminals can both see and hear one another. Video telephony capable terminals can include a camera and microphone that generates a respective video stream and audio stream, and which are communicated over a wireless interface to another one of the terminals.
[0003] Providing video telephony over a wireless interface can be difficult because of the amount of data bandwidth that can be needed to send and receive real time/near-real time video audio streams over wireless communication interfaces that can have significant bandwidth constraints, hi some video telephony applications, wireless communication terminals need to both send and receive real time video streams, and which can include 10 frames per second. The resulting data bandwidth requirements on the wireless interface can exceed those needed for voice only calls by a multiple of about 5 to 10 times. Such high data bandwidth may not be readily available when the air interface is shared among many wireless communication terminals, such within a service area of a cellular base station in a cellular communication system. Accordingly, providing video telephony over an efficiently utilized wireless communication interface continues to be a challenge.
SUMMARY OF THE INVENTION
[0004] In some embodiments of the present invention, a communication terminal includes a communication module, a camera device, a display device, and a controller. The communication module receives a display characteristic command and an input video data stream from a remotely located other communication terminal and sends an output video data stream thereto. The camera device generates an initial video data stream based on incident light. The display device displays a received input video data stream from the remote communication terminal. The controller generates the output video data stream based on the initial video data stream and a received display characteristic command from the remote communication terminal.
[0005] In some further embodiments, the display characteristic command can be indicative of a resolution at which the output video data stream will be displayed on the remote communication terminal. The controller can vary a resolution of the output video data stream responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
[0006] In some further embodiments, the controller can compress the initial video data stream to generate the output video data stream using a compression rate that varies responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal. The controller can compress the initial video data stream to generate the output video data stream using a lossy data compression algorithm that provides a variable quality of video. The quality of video can be varied responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
[0007] Ih some further embodiments, the controller can vary a frame rate of the output video data stream responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
[0008] In some further embodiments, the received display characteristic command can be indicative of a frame rate at which the output video data stream will be displayed on the remote communication terminal. The controller can vary a frame rate of the output video data stream responsive to the indication by the received display characteristic command of the frame rate at which the output video data stream will be displayed on the remote communication terminal. The controller can vary a resolution of the output video data stream relative to the initial video data stream responsive to the indication by the received display characteristic command of the frame rate at which the output video data stream will be displayed on the remote communication terminal.
[0009] In some further embodiments, the received display characteristic command can be indicative of whether the output video data stream will be displayed on the remote communication terminal. The controller can selectively transmit or not transmit the output video data stream responsive to the indication by the received display characteristic command of whether the output video data stream will be displayed on the remote communication terminal.
[0010] In some further embodiments, the communication module can include a wireless communication module that is configured to receive the display characteristic command and the input video data stream over a wireless communication interface from the remote communication terminal, and configured to transmit the output video data stream thereto over the wireless communication interface. The controller can vary a maximum amount of data bandwidth of the wireless communication interface that is used to transmit the output video data stream to the remote communication terminal responsive to the received display characteristic command. The received display characteristic command is indicative of a resolution at which the output video data stream will be displayed on the remote communication terminal. The controller can vary a resolution of the output video data stream responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
[0011] In some further embodiments, the received display characteristic command is indicative of a frame rate at which the output video data stream will be displayed on the remote communication terminal. The controller can vary a frame rate of the output video data stream that is transmitted across the wireless interface responsive to the indication by the received display characteristic command of the frame rate at which the output video data stream will be displayed on the remote communication terminal.
[0012] In some further embodiments, the received display characteristic command is indicative of whether the output video data stream will be displayed on the remote communication terminal. The controller can selectively transmit or not transmit the output video data stream across the wireless interface responsive to the indication by the received display characteristic command of whether the output video data stream will be displayed on the remote communication terminal.
[0013] In some further embodiments, the communication module is configured to receive an input audio data stream from the remote communication terminal and to send an output audio data stream thereto. The terminal can also include a microphone that is configured to generate the output audio data stream responsive to incident sound, and a speaker that is configured to generate sound responsive to the input audio data stream.
[0014] In some other embodiments of the present invention, a communication terminal includes a communication module, a camera device, a display device, and a controller. The communication module receives an input video data stream from a remotely located other communication terminal and sends a display characteristic command and an output video data stream thereto. The camera device generates the output video data stream based on incident light. The display device displays a received input video data stream from the remote communication terminal according to a variable video resolution and/or a variable video frame rate. The controller is configured to control the display device to display the input video data stream with a particular one of the variable video resolutions and/or a particular one of the variable video frame rates, and to generate the display characteristic command so that it is indicative to the remote communication terminal of the particular video resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
[0015] In some further embodiments, the terminal further includes a user interface through which a user can generate a command to change a size of a portion of the display device that is used to display the input video data stream. The controller can vary the particular video resolution and/or the particular video frame rate at which the display device displays the input video data stream responsive to the indication from a user via the user interface, and can generate the display characteristic command so that it is indicative to the remote communication terminal of the particular video resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
[0016] In some further embodiments, the controller can command the remote communication terminal through the display characteristic command to compress the video data stream sent to the communication terminal using a compression rate that varies responsive to the indication by the display characteristic command of the particular video resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
[0017] In some further embodiments, the controller can command the remote communication terminal through the display characteristic command to compress the video data stream sent to the communication terminal using a lossy data compression algorithm that provides a variable quality of video which is varied responsive to the indication by the display characteristic command of the particular video resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
[0018] In some further embodiments, the controller can command the remote communication terminal through the display characteristic command to vary a video frame rate of the video data stream that is sent to the communication terminal as the input video data stream responsive to the indication by the display characteristic command of the particular resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
[0019] In some further embodiments, the controller can selectively display or not display the input video data stream on the display device responsive to a command from a user, and can command the remote communication terminal through the display characteristic command to stop sending the input video data stream when the controller does not display the input video data stream on the display device.
[0020] In some further embodiments, the communication module comprises a wireless communication module that is configured to receive the input video data stream from the remote communication terminal over a wireless communication interface and to transmit the display characteristic command over the wireless communication interface.
[0021] In some further embodiments, the controller can command the remote communication terminal through the display characteristic command to vary a maximum amount of data bandwidth of the wireless communication interface that it uses to transmit the video data stream to the communication module of the communication terminal.
BRIEF DESCRIPTION OF THE DRAWINGS [0022] Figure 1 is a schematic block diagram illustrating a wireless communication terminals and a cellular communication system that provide video telephony in accordance with some embodiments of the present invention.
[0023] Figures 2a-c illustrate different video telephony displays on two wireless communication terminals and the associated data communicated therebetween in accordance with some embodiments of the present invention.
[0024] Figure 3 is a flowchart illustrating operations for varying characteristics of a video data stream from a remote wireless communication terminal using a display characteristic command, in accordance with some embodiments of the present invention.
[0025] Figure 4 is a flowchart illustrating operations for varying characteristics of a video data stream that is transmitted to a remote wireless communication terminal responsive to a display characteristic command that is received therefrom, in accordance with some embodiments of the present invention. DETAILED DESCRIPTION OF EMBODIMENTS OF THE INVENTION
[0026] The present invention now will be described more folly hereinafter with reference to the accompanying drawings, in which embodiments of the invention are shown. However, this invention should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will folly convey the scope of the invention to those skilled in the art. Like numbers refer to like elements throughout. As used herein the term "comprising" or "comprises" is open-ended, and includes one or more stated elements, steps and/or functions without precluding one or more unstated elements, steps and/or functions. As used herein the term "and/or" includes any and all combinations of one or more of the associated listed items.
[0027] Embodiments according to the present invention are described with reference to block diagrams and/or operational illustrations of methods and communication terminals. It is to be understood that each block of the block diagrams and/or operational illustrations, and combinations of blocks in the block diagrams and/or operational illustrations, can be implemented by radio frequency, analog and/or digital hardware, and/or program instructions. These program instructions may be provided to a controller, which may include one or more general purpose processors, special purpose processors, ASICs, and/or other programmable data processing apparatus, such that the instructions, which execute via the controller and/or other programmable data processing apparatus, create means for implementing the functions/acts specified in the block diagrams and/or operational block or blocks. In some alternate implementations, the functions/acts noted in the blocks may occur out of the order noted in the operational illustrations. For example, two blocks shown in succession may in fact be executed substantially concurrently or the blocks may sometimes be executed in the reverse order, depending upon the functionality/acts involved.
[0028] As used herein, a "communication terminal" includes, but is not limited to, a terminal that is configured to receive/transmit communication signals via a wireline connection, such as via a public-switched telephone network (PSTN), digital subscriber line (DSL), digital cable, or another data connection/network, and/or via a wireless interface with, for example, a cellular network, a wireless local area network (WLAN), and/or another communication terminal. When the communication terminal is configured to communicate over a wireless interface, it is referred to herein as a "wireless communication terminal" and a "wireless terminal." Examples of wireless terminals include, but are not limited to, a cellular telephone, personal data assistant (PDA), pager, and/or a computer that is configured to communicate data over a wireless communication interface that can include a cellular telephone interface, a Bluetooth interface, a wireless local area network interface (e.g., 802.11), another RF communication interface, and/or an optical/infra-red communication interface.
[0029] Figure 1 is a schematic block diagram of a wireless communication system 100 that includes two wireless terminals 102, 104 that are configured to communicate data with one another over a direct wireless communication interface 106 therebetween, over another wireless communication interface 108 through one or more cellular base stations 110a-b, and/or over another wireless communication interface 112 through a wireless local area network (WLAN) router 114. The wireless terminals 102, 104 include a display device 120, a user interface 122, a camera device 124, a controller 126, and a communication module 128.
[0030] The camera device 124 is configured to generate a video data stream based on incident light. The user interface 122 can include a keypad, keyboard, touchpad and/or other user input device. The user 122 interface can also include a microphone that is configured to generate an audio data stream responsive to incident sound, and a speaker that generates sound responsive to an input audio data stream. The communication module 128 is configured to communicate data over one or more of the wireless interfaces 106, 108, and/or 112 to another remote wireless terminal 102,104.
[0031] The communication module 128 can include a cellular communication module, a Bluetooth module, and/or a WLAN module. With a cellular communication module, the wireless terminals 102, 104 can communicate via the base stations 110a-b using one or more cellular communication protocols such as, for example, Advanced Mobile Phone Service (AMPS), ANSI- 136, Global Standard for Mobile (GSM) communication, General Packet Radio Service (GPRS), enhanced data rates for GSM evolution (EDGE), code division multiple access (CDMA), wideband-CDMA, CDMA2000, and Universal Mobile Telecommunications System (UMTS). The cellular base stations 110a-b are connected to a Mobile Telephone Switching Office (MTSO) 130 wireless network, which, in turn, is connected to a PSTN 132 and/or another network. With a Bluetooth module, the wireless terminal 102,104 can communicate via an ad-hoc network through the direct interface 106. With a WLAN module, the wireless terminal 102,104 can communicate through the WLAN router 114 using a communication protocol that may include, but is not limited to, 802.11a, 802.11b, 802.1 Ie, 802.1 Ig, 802. Hi.
[0032] The wireless terminals 102,104 are configured to transmit and/or receive a video data stream with one another and/or with another communication terminal that may be communicatively coupled thereto through, for example the MTSO 130 and the PSTN 132 and/or another network, hi some embodiments, the wireless terminals 102, 104 are configured to establish a video telephony connection with one another in which they transmit the video data stream from their respective cameras 124 and receive and display on their respective display devices 120 the received video data stream. The wireless terminals 102, 104 may also exchange an audio data stream that is generated by a microphone and played through a speaker in their respectively user interfaces 122. Accordingly, when a video telephony connection is established through the wireless terminals 102, 104, users may both see and hear one another.
[0033] hi accordance with various embodiments of the present invention, a wireless terminals that is receiving a video data stream from another wireless terminal informs that other wireless terminal whether or not that video data stream is being displayed, and, if displayed, it informs the other wireless terminal of one or more characteristics associated with how the video data stream is displayed. The display characteristics can include an indication of what video resolution (e.g., lines of video per frame, number of pixels, and/or size indication) and/or what video frame rate is used to display the video data stream on the receiving wireless terminal. The display characteristics can be communicated from the displaying wireless terminal to the transmitting wireless terminal through a display characteristic command. These display characteristics may vary over time responsive to, for example, a user command through the user interface 122. Accordingly, as the display characteristics change over time at the receiving wireless terminal, it can communicate the updated display characteristics to the transmitting wireless terminal.
[0034] The transmitting wireless terminal can then selectively transmit or not transmit the video data stream, and can vary one or more characteristics of the transmitted video data stream based on the received display characteristic command. As will be discussed further below, the transmitting wireless terminal may vary the video resolution, video frame rate, compression rate, and/or quality of video that is transmitted to the receiving wireless terminal based on the indication through the display characteristic command of whether and/or how the video data stream will be, or is being, displayed. Accordingly, the receiving wireless terminal can coordinate with the transmitting wireless terminal to optimize the amount of data that is used in the video data stream based on whether and/or how it is to be displayed, and they may thereby increase the efficiency with which they use the data bandwidth of the wireless interfaces 106, 108, and/or 112.
[0035] An exemplary embodiment will now be described with reference to the block diagram and associated methods illustrated in Figures 2a-c, and by which the wireless terminals 102, 104 establish a video telephony connection therebetween through which users can exchange real time/near real time video and voice. The wireless terminals 102, 104 may initiate the video telephony connection by exchanging display characteristic commands that are indicative of how a received video data stream will be displayed. The wireless terminals 102, 104 respond to the display characteristic command from other terminal by adjusting the video resolution (i.e., display size), compression rate, and/or quality of video that it transmits.
[0036] Referring now to Figure 2a, the wireless terminals 102, 104 initially exchange voice data streams and full video. As shown, wireless terminal 102 displays a large image of the video data stream received from wireless terminal 104 (VIDEO 2) and a small image of the video data stream that is locally generated by the camera 124 (VIDEO 1). For example, the local VIDEO 1 may be displayed in an area of the display device 120 that overlies the VIDEO 2 display area (e.g., a picture-in- picture display format). Similarly, wireless terminal 104 displays a large image of the video data stream received from wireless terminal 102 (VIDEO 1) and a small image of the video data stream that is locally generated by the camera 124 (VE)EO 2).
[0037] Referring to Figure 2b, a user commands the wireless terminal 102 to swap where the local VIDEO 1 and remote VIDEO 2 data streams are displayed. By swapping the where VIDEO 1 and VIDEO 2 are displayed, the user can obtain an enlarged view of VIDEO 1 which may provide a better appreciation of how it may appear to another user at wireless terminal 104. Accordingly, the local VIDEO 1 is then displayed in the larger area of the display 120 and the remote VIDEO 2 is displayed in the smaller area of the display 120. The wireless terminal 102 also notifies the wireless terminal 104 through the display characteristic command that the VIDEO 2 which it transmits will be displayed in a smaller area. The wireless terminal 104 responds to the change in display characteristics by modifying the VIDEO 2 data stream. The characteristics of the VIDEO 2 data stream that can be modified by the controller 126 in wireless terminal 104 can include, but are not limited to, video resolution, video frame rate, compression rate, and/or other video quality.
[0038] The controller 126 in wireless terminal 104 can vary the resolution of the transmitted VIDEO 2 data stream responsive to the display characteristic command. Consequently, the controller 126 in wireless terminal 104 can increase the resolution of the transmitted VIDEO 2 when the display characteristic command indicates that VIDEO 2 will be displayed on a larger area of the display 120 in wireless terminal 102, and can decrease the resolution when VIDEO 2 will be displayed on a smaller area at wireless terminal 102.
[0039] The controller 126 in wireless terminal 104 may decrease the frame rate of the transmitted VIDEO 2 data stream when the display characteristic command indicates that VIDEO 2 will be displayed on a larger area of the display 120 in wireless terminal 102, and can decrease the video frame rate when VIDEO 2 will be displayed on a smaller area at wireless terminal 102.
[0040] The controller 126 in wireless terminal 104 may use a lossy data compression algorithm that provides a variable quality of video (e.g., vary the amount of information in the video) responsive to the display characteristic command. For example, the video data stream from the camera 124 in wireless terminal 104 can be use a lower compression rate with a corresponding higher video quality when the display characteristic command indicates that VIDEO 2 will be displayed on a larger area of the display 120 in wireless terminal 102, and can use a higher compression rate with a corresponding lower video quality when VIDEO 2 will be displayed on a smaller area at wireless terminal 102. The lossy data compression algorithm can include, but is not limited to, MPEP (moving pictures experts group) and JPEG (joint photographic experts group) data compression algorithms.
[0041] Referring to Figure 2c, a user commands the wireless terminal 102 to stop displaying VIDEO 2 and only display VIDEO 1. The user may thereby obtain an unobstructed and/or larger view of the VIDEO 1 that is being transmitted to the remote wireless terminal 104. The controller 126 in wireless terminal 102 notifies the wireless terminal 104 through the display characteristic command that the VIDEO 2 is not being displayed at wireless terminal 102. The controller 126 in wireless terminal 104 responds to the notice by stopping its transmission of the VIDEO 2 data stream, while continuing to transmit the voice data stream. If the user subsequently commands the wireless terminal 102 to display VIDEO 2, the controller 126 notifies the wireless terminal 104 through the display characteristic command that the VIDEO 2 will be displayed at wireless terminal 102, and the controller 126 in wireless terminal 104 can respond to the notice by resuming its transmission of VIDEO 2.
[0042] Accordingly, the wireless terminals 102, 104 may setup the video telephony connection by coordinating with each other to optimize the amount of data that is used in the transmitted video data stream based whether and/or how it is to be displayed. Then, as one or both the wireless terminals 102, 104 changes how it displays received video, an indication of that change can be coordinated with the other wireless terminal 102, 104 to again optimize the amount of data that is used in the transmitted video data stream.
[0043] Figure 3 is a flowchart that illustrates operations for varying the characteristics of a video data stream that is received from a remote transmitting communication terminal using a display characteristic command. At Block 300, a communication terminal that is to receive video sends a display characteristics command to the remote transmitting communication terminal which characterize how a received video data stream will be displayed on the receiving terminal. At Block 302, the receiving terminal receives the video data stream from the transmitting terminal. At Block 304, the receiving terminal receives a command from a user to change how the received video data stream is displayed thereon. At Block 306, the receiving terminal modifies how it displays the received video data stream. At Block 308, the receiving terminal sends a display characteristics command that notifies the transmitting terminal of the modified characteristics with which the video data stream will be displayed by the receiving terminal.
[0044] Figure 4 is a flowchart that illustrates operations for varying the characteristics of a video data stream that a transmitting terminal transmits to a remote receiving terminal. At Block 402, the transmitting terminal receives from the remote receiving terminal a display characteristics command which characterize how a received video data stream will be displayed on the remote receiving terminal. At Block 404, the transmitting terminal transmits a video data stream with first characteristics to the receiving terminal. As explained above, the first characteristics of the video data stream can include, video resolution, video frame rate, compression rate, and/or video quality. At Block 406, the transmitting terminal receives a display characteristics command that indicates a modification to how the transmitted video data stream will displayed by the receiving terminal. At Block 408, the transmitting terminal transmits the video data stream with second characteristics that are different than the first characteristics. As was also explained above, the transmitting terminal can vary, for example, the video resolution, video frame rate, compression rate, and/or video quality of the transmitted video data stream.
[0045] In the drawings and specification, there have been disclosed embodiments of the invention and, although specific terms are employed, they are used in a generic and descriptive sense only and not for purposes of limitation, the scope of the invention being set forth in the following claims.

Claims

WHAT IS CLAIMED IS:
1. A communication terminal comprising: a communication module that is configured to receive a display characteristic command and an input video data stream from a remotely located other communication terminal and to send an output video data stream thereto; a camera device that is configured to generate an initial video data stream based on incident light; a display device that is configured to display a received input video data stream from the remote communication terminal; and a controller that is configured to generate the output video data stream based on the initial video data stream and a received display characteristic command from the remote communication terminal.
2. The communication terminal of Claim 1, wherein: the received display characteristic command is indicative of a resolution at which the output video data stream will be displayed on the remote communication terminal; and the controller is further configured to vary a resolution at which the output video data stream represents the initial video data stream responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
3. The communication terminal of Claim 2, wherein the controller is further configured to compress the initial video data stream to generate the output video data stream using a compression rate that varies responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
4. The communication terminal of Claim 3, wherein the controller is further configured to compress the initial video data stream to generate the output video data stream using a lossy data compression algorithm that provides a variable quality of video, and wherein the quality of video is varied responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
5. The communication terminal of any of Claims 2 - 4, wherein the controller is further configured to vary a frame rate of the output video data stream responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
6. The communication terminal of any previous Claim, wherein: the received display characteristic command is indicative of a frame rate at which the output video data stream will be displayed on the remote communication terminal; and the controller is further configured to vary a frame rate of the output video data stream responsive to the indication by the received display characteristic command of the frame rate at which the output video data stream will be displayed on the remote communication terminal.
7. The communication terminal of any previous Claim, wherein: the received display characteristic command is indicative of a frame rate at which the output video data stream will be displayed on the remote communication terminal; and the controller is further configured to vary a resolution of the output video data stream relative to the initial video data stream responsive to the indication by the received display characteristic command of the frame rate at which the output video data stream will be displayed on the remote communication terminal.
8. The communication terminal of any previous Claim, wherein: the received display characteristic command is indicative of whether the output video data stream will be displayed on the remote communication terminal; and the controller is further configured to selectively transmit or not transmit the output video data stream responsive to the indication by the received display characteristic command of whether the output video data stream will be displayed on the remote communication terminal.
9. The communication terminal of any previous Claim, wherein the communication module comprises a wireless communication module that is configured to receive the display characteristic command and the input video data stream over a wireless communication interface from the remote communication terminal and to transmit the output video data stream thereto over the wireless communication interface.
10. The communication terminal of Claim 9, wherein the controller is configured to vary a maximum amount of data bandwidth of the wireless communication interface that is to transmit the output video data stream to the remote communication terminal responsive to the received display characteristic command.
11. The communication terminal of Claim 9 or 10, wherein: the received display characteristic command is indicative of a resolution at which the output video data stream will be displayed on the remote communication terminal; and the controller is further configured to vary a resolution of the output video data stream based on the initial video data stream responsive to the indication by the received display characteristic command of the resolution at which the output video data stream will be displayed on the remote communication terminal.
12. The communication terminal of any of Claims 9 - 11, wherein the received display characteristic command is indicative of a frame rate at which the output video data stream will be displayed on the remote communication terminal; and the controller is further configured to vary a frame rate of the output video data stream responsive to the indication by the received display characteristic command of the frame rate at which the output video data stream will be displayed on the remote communication terminal.
13. The communication terminal of any of Claims 9 - 12, wherein: the received display characteristic command is indicative of whether the output video data stream will be displayed on the remote communication terminal; and the controller is further configured to selectively transmit or not transmit the output video data stream responsive to the indication by the received display characteristic command of whether the output video data stream will be displayed on the remote communication terminal.
14. The communication terminal of any previous Claim, wherein the communication module is configured to receive an input audio data stream from the remote communication terminal and to send an output audio data stream thereto, and further comprising: a microphone that is configured to generate the output audio data stream responsive to incident sound; and a speaker that is configured to generate sound responsive to the input audio data stream.
15. A communication terminal comprising: a communication module that is configured to receive an input video data stream from a remotely located other communication terminal and to send a display characteristic command and an output video data stream thereto; a camera device that is configured to generate the output video data stream based on incident light; a display device that is configured to display a received input video data stream from the remote communication terminal according to a variable video resolution and/or a variable video frame rate; and a controller that is configured to control the display device to display the input video data stream with a particular one of the variable video resolutions and/or a particular one of the variable video frame rates, and to generate the display characteristic command so that it is indicative to the remote communication terminal of the particular video resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
16. The communication terminal of Claim 15, further comprising a user interface through which a user can generate a command to change a size of a portion of the display device that is used to display the input video data stream, and wherein the controller is further configured to vary the particular video resolution and/or the particular video frame rate at which the display device displays the input video data stream responsive to the indication from a user via the user interface, and to generate the display characteristic command so that it is indicative to the remote communication terminal of the particular video resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
17. The communication terminal of Claim 16, wherein the controller is further configured to command the remote communication terminal through the display characteristic command to compress the video data stream sent to the communication terminal using a compression rate that varies responsive to the indication by the display characteristic command of the particular video resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
18. The communication terminal of Claim 16 or 17, wherein the controller is further configured to command the remote communication terminal through the display characteristic command to compress the video data stream sent to the communication terminal using a lossy data compression algorithm that provides a variable quality of video which is varied responsive to the indication by the display characteristic command of the particular video resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
19. The communication terminal of any of Claims 16 - 18, wherein the controller is further configured to command the remote communication terminal through the display characteristic command to vary a video frame rate of the video data stream that is sent to the communication terminal as the input video data stream responsive to the indication by the display characteristic command of the particular resolution and/or the particular video frame rate at which the input video data stream is displayed on the display.
20. The communication terminal of any of Claims 15 - 19, wherein the controller is configured to selectively display or not display the input video data stream on the display device responsive to a command from a user, and to command the remote communication terminal through the display characteristic command to stop sending the input video data stream when the controller does not display the input video data stream on the display device.
21. The communication terminal of any of Claims 15 - 20, wherein the communication module comprises a wireless communication module that is configured to receive the input video data stream from the remote communication terminal over a wireless communication interface and to transmit the display characteristic command over the wireless communication interface.
22. The communication terminal of Claim 21 , wherein the controller is configured to command the remote communication terminal through the display characteristic command to vary a maximum amount of data bandwidth of the wireless communication interface that it uses to transmit the video data stream to the communication module of the communication terminal.
PCT/EP2006/002107 2005-03-14 2006-03-08 Communication terminals that vary a video stream based on how it is displayed WO2006097226A1 (en)

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Families Citing this family (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1865725A4 (en) * 2005-03-29 2012-01-25 Nec Corp Mobile terminal
US20070133413A1 (en) * 2005-12-09 2007-06-14 Andrew Pepperell Flow control in a video conference
US8015491B2 (en) * 2006-02-28 2011-09-06 Maven Networks, Inc. Systems and methods for a single development tool of unified online and offline content providing a similar viewing experience
CN101552913B (en) * 2009-05-12 2011-07-06 腾讯科技(深圳)有限公司 Multi-channel video communication system and processing method
TWI389569B (en) * 2009-07-21 2013-03-11 Acer Inc Video conferencing signal processing system
US20110216153A1 (en) * 2010-03-03 2011-09-08 Michael Edric Tasker Digital conferencing for mobile devices
US9509935B2 (en) 2010-07-22 2016-11-29 Dolby Laboratories Licensing Corporation Display management server
KR20120078838A (en) * 2011-01-03 2012-07-11 삼성전자주식회사 Method and apparatus for providing video telephony of a mobile terminal
CN102595093A (en) * 2011-01-05 2012-07-18 腾讯科技(深圳)有限公司 Video communication method for dynamically changing video code and system thereof
CN102307318B (en) * 2011-03-18 2017-07-07 海尔集团公司 The processing method and system of Internet video are carried out by Web TV
US8848018B2 (en) * 2012-05-30 2014-09-30 TwineLAB Oy Method and apparatus for providing video call service
US9137488B2 (en) * 2012-10-26 2015-09-15 Google Inc. Video chat encoding pipeline
CN103905771B (en) * 2012-12-28 2018-12-07 腾讯科技(深圳)有限公司 Video communication method and user terminal
US9589533B2 (en) 2013-02-28 2017-03-07 Robert Bosch Gmbh Mobile electronic device integration with in-vehicle information systems
US9628796B2 (en) * 2014-05-15 2017-04-18 Qualcomm Incorporated System and method to optimize video performance in wireless-dock with ultra-high definition display
US10771736B2 (en) * 2014-06-30 2020-09-08 Microsoft Technology Licensing, Llc Compositing and transmitting contextual information during an audio or video call
JP2016082455A (en) * 2014-10-17 2016-05-16 株式会社リコー Transmission system, transmission terminal, transmission method and transmission program
US9705936B2 (en) * 2015-04-24 2017-07-11 Mersive Technologies, Inc. System and method for interactive and real-time visualization of distributed media
CN113497957A (en) * 2020-03-18 2021-10-12 摩托罗拉移动有限责任公司 Electronic device and method for capturing images from an external display of a remote electronic device

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5821986A (en) * 1994-11-03 1998-10-13 Picturetel Corporation Method and apparatus for visual communications in a scalable network environment
EP1033848A1 (en) * 1999-02-26 2000-09-06 Lucent Technologies Inc. Proxy server supporting IP quality of service
US20010037508A1 (en) * 1997-10-09 2001-11-01 Debby Hindus Variable bandwidth communication systems and methods
US20020167586A1 (en) * 2001-05-11 2002-11-14 Meng-Hsien Liu Real-time vidoe/audio quality adjustment method
GB2384932A (en) * 2002-01-30 2003-08-06 Motorola Inc Video conferencing system that provides higher quality images for most active speaker
US20030172131A1 (en) * 2000-03-24 2003-09-11 Yonghui Ao Method and system for subject video streaming
US20050094646A1 (en) * 2003-10-30 2005-05-05 C And S Technology Co., Ltd. IP video terminal with function for controlling video transmission/reception bandwidth and image quality and control method thereof

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1192619C (en) * 2002-01-08 2005-03-09 华为技术有限公司 Multiple-picture display method in video conference system
JP3775346B2 (en) * 2002-05-29 2006-05-17 株式会社日立製作所 Videophone system and terminal device thereof

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5821986A (en) * 1994-11-03 1998-10-13 Picturetel Corporation Method and apparatus for visual communications in a scalable network environment
US20010037508A1 (en) * 1997-10-09 2001-11-01 Debby Hindus Variable bandwidth communication systems and methods
EP1033848A1 (en) * 1999-02-26 2000-09-06 Lucent Technologies Inc. Proxy server supporting IP quality of service
US20030172131A1 (en) * 2000-03-24 2003-09-11 Yonghui Ao Method and system for subject video streaming
US20020167586A1 (en) * 2001-05-11 2002-11-14 Meng-Hsien Liu Real-time vidoe/audio quality adjustment method
GB2384932A (en) * 2002-01-30 2003-08-06 Motorola Inc Video conferencing system that provides higher quality images for most active speaker
US20050094646A1 (en) * 2003-10-30 2005-05-05 C And S Technology Co., Ltd. IP video terminal with function for controlling video transmission/reception bandwidth and image quality and control method thereof

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US20060203080A1 (en) 2006-09-14
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