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    • 5. 发明申请
    • Systems and methods for security and privacy controls for videoconferencing
    • 用于视频会议的安全和隐私控制的系统和方法
    • US20110279637A1
    • 2011-11-17
    • US13105704
    • 2011-05-11
    • Alagu PeriyannanKrish RamakrishnanRaghavan AnandAnand RaghavanRavi Kiran KalluriEmmanuel Weber
    • Alagu PeriyannanKrish RamakrishnanRaghavan AnandAnand RaghavanRavi Kiran KalluriEmmanuel Weber
    • H04N7/15
    • H04N7/152H04N5/265H04N7/141
    • A new approach is proposed that contemplates systems and methods to support the operation of a Virtual Media Room or Virtual Meeting Room (VMR), wherein each VMR can accept from a plurality of participants at different geographic locations a variety of video conferencing feeds of audio and video streams from video conference endpoints and enables a multi-party video conferencing session in real time among the plurality of participants. Each of the participants is offered a rich set of conferencing and collaboration interaction hitherto not experienced by video conferencing participants and a moderator of the video conference is further offered with in-meeting management and control over a plurality of security and privacy settings during the video conference. These interactions encompass controlling of a video conferencing session, its configuration, privacy, security, the visual layout of the participants, customization of the VMR and adaptation of the room to different vertical applications.
    • 提出了一种考虑用于支持虚拟媒体室或虚拟会议室(VMR)的操作的系统和方法的新方法,其中每个VMR可以从不同地理位置的多个参与者接受各种视频会议馈送的音频和 来自视频会议端点的视频流并且在多个参与者之间实时地实现多方视频会议会话。 每个参与者都提供了一组迄今为止未被视频会议参与者所经历的会议和协作交互,并且视频会议的主持人在视频会议期间进一步提供对多个安全和隐私设置的会议管理和控制 。 这些互动包括视频会议会话的控制,其配置,隐私,安全性,参与者的视觉布局,VMR的定制以及房间适应不同的垂直应用。
    • 6. 发明授权
    • Systems and methods for security and privacy controls for videoconferencing
    • 用于视频会议的安全和隐私控制的系统和方法
    • US09041765B2
    • 2015-05-26
    • US13105704
    • 2011-05-11
    • Alagu PeriyannanKrish RamakrishnanRaghavan AnandAnand RaghavanRavi Kiran KalluriEmmanuel Weber
    • Alagu PeriyannanKrish RamakrishnanRaghavan AnandAnand RaghavanRavi Kiran KalluriEmmanuel Weber
    • H04N7/15H04N7/14H04N5/265
    • H04N7/152H04N5/265H04N7/141
    • A new approach is proposed that contemplates systems and methods to support the operation of a Virtual Media Room or Virtual Meeting Room (VMR), wherein each VMR can accept from a plurality of participants at different geographic locations a variety of video conferencing feeds of audio and video streams from video conference endpoints and enables a multi-party video conferencing session in real time among the plurality of participants. Each of the participants is offered a rich set of conferencing and collaboration interaction hitherto not experienced by video conferencing participants and a moderator of the video conference is further offered with in-meeting management and control over a plurality of security and privacy settings during the video conference. These interactions encompass controlling of a video conferencing session, its configuration, privacy, security, the visual layout of the participants, customization of the VMR and adaptation of the room to different vertical applications.
    • 提出了一种考虑用于支持虚拟媒体室或虚拟会议室(VMR)的操作的系统和方法的新方法,其中每个VMR可以从不同地理位置的多个参与者接受各种视频会议馈送的音频和 来自视频会议端点的视频流并且在多个参与者之间实时地实现多方视频会议会话。 每个参与者都提供了一组迄今为止未被视频会议参与者所经历的会议和协作交互,并且视频会议的主持人在视频会议期间进一步提供对多个安全和隐私设置的会议管理和控制 。 这些互动包括视频会议会话的控制,其配置,隐私,安全性,参与者的视觉布局,VMR的定制以及房间适应不同的垂直应用。
    • 8. 发明申请
    • Systems and methods for scalable distributed global infrastructure for real-time multimedia communication
    • 用于实时多媒体通信的可扩展分布式全球基础设施的系统和方法
    • US20110279636A1
    • 2011-11-17
    • US13105699
    • 2011-05-11
    • Alagu PeriyannanRaghavan AnandMichael GrupenhoffRavi Kiran KalluriEmmanuel WeberAnil Villait
    • Alagu PeriyannanRaghavan AnandMichael GrupenhoffRavi Kiran KalluriEmmanuel WeberAnil Villait
    • H04N7/15
    • H04N7/152H04N5/265H04N7/141
    • A new approach is proposed that contemplates systems and methods to support the operation of a Virtual Media Room or Virtual Meeting Room (VMR), wherein each VMR can accept from a plurality of participants at different geographic locations a variety of video conferencing feeds of audio and video streams from video conference endpoints. A globally distributed infrastructure that supports operations of the VMR through a plurality of MCUs (Multipoint Control Unit) built from off-the-shelf components instead of custom hardware as media processing nodes, each configured to process the plurality of audio and video streams from the plurality of video conference endpoints in real time. Each single VMR can be implemented and supported across the infrastructure of globally distributed set of servers/media processing nodes co-located in Points of Presence (POPs) for Internet access, wherein such massively distributed architecture can support thousands of simultaneously active VMRs and yet is transparent to the users of the VMRs.
    • 提出了一种考虑用于支持虚拟媒体室或虚拟会议室(VMR)的操作的系统和方法的新方法,其中每个VMR可以从不同地理位置的多个参与者接受各种视频会议馈送的音频和 来自视频会议端点的视频流。 一种全球分布式基础设施,其通过多个MCU(Multipoint Control Unit,多点控制单元)来支持VMR的操作,这些MCU由现成的组件而不是定制硬件构成,作为媒体处理节点,每个配置用于处理多个音频和视频流 多个视频会议端点实时。 每个单独的VMR可以在共同位于用于因特网接入的存在点(POPs)的全球分布式服务器/媒体处理节点集合的基础设施上实现和支持,其中这种大规模分布式架构可以支持数千个同时活跃的VMR,但是 对VMR的用户透明。
    • 9. 发明授权
    • Systems and methods for scalable distributed global infrastructure for real-time multimedia communication
    • 用于实时多媒体通信的可扩展分布式全球基础设施的系统和方法
    • US08514263B2
    • 2013-08-20
    • US13105699
    • 2011-05-11
    • Alagu PeriyannanRaghavan AnandMichael GrupenhoffRavi Kiran KalluriEmmanuel WeberAnil Villait
    • Alagu PeriyannanRaghavan AnandMichael GrupenhoffRavi Kiran KalluriEmmanuel WeberAnil Villait
    • H04N7/14
    • H04N7/152H04N5/265H04N7/141
    • A new approach is proposed that contemplates systems and methods to support the operation of a Virtual Media Room or Virtual Meeting Room (VMR), wherein each VMR can accept from a plurality of participants at different geographic locations a variety of video conferencing feeds of audio and video streams from video conference endpoints. A globally distributed infrastructure that supports operations of the VMR through a plurality of MCUs (Multipoint Control Unit) built from off-the-shelf components instead of custom hardware as media processing nodes, each configured to process the plurality of audio and video streams from the plurality of video conference endpoints in real time. Each single VMR can be implemented and supported across the infrastructure of globally distributed set of servers/media processing nodes co-located in Points of Presence (POPs) for Internet access, wherein such massively distributed architecture can support thousands of simultaneously active VMRs and yet is transparent to the users of the VMRs.
    • 提出了一种考虑用于支持虚拟媒体室或虚拟会议室(VMR)的操作的系统和方法的新方法,其中每个VMR可以从不同地理位置的多个参与者接受各种视频会议馈送的音频和 来自视频会议端点的视频流。 一种全球分布式基础设施,其通过多个MCU(Multipoint Control Unit,多点控制单元)来支持VMR的操作,这些MCU由现成的组件而不是定制硬件构成,作为媒体处理节点,每个配置用于处理多个音频和视频流 多个视频会议端点实时。 每个单独的VMR可以在共同位于用于因特网接入的存在点(POPs)的全球分布式服务器/媒体处理节点集合的基础设施上实现和支持,其中这种大规模分布式架构可以支持数千个同时活跃的VMR,但是 对VMR的用户透明。