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    • 1. 发明授权
    • System and method for end-to-end encryption and security indication at an endpoint
    • 终端端到端加密和安全指示的系统和方法
    • US09356917B2
    • 2016-05-31
    • US13571098
    • 2012-08-09
    • Mehmet BalasaygunJean MelocheHeinz TeutschShalini Yajnik
    • Mehmet BalasaygunJean MelocheHeinz TeutschShalini Yajnik
    • H04L29/06
    • H04L63/0464H04L63/166H04L63/20
    • Disclosed herein are systems, methods, and non-transitory computer-readable storage media for implementing real-time transport control protocol to obtain an end-to-end encryption and security status of a communication session. The system collects real-time transport control protocol messages associated with a communication session, wherein the real-time transport control protocol messages are generated by devices in the communication session, and wherein the real-time transport control protocol messages include security information associated with the communication session. Then, based on the real-time transport control protocol messages, the system determines a security status associated with the communication session. The system can also generate an indication of the security status associated with the communication session. Further, the system can generate an indication of the security status of a communication session on a per participant basis.
    • 这里公开了用于实现实时传输控制协议以获得通信会话的端到端加密和安全状态的系统,方法和非暂时的计算机可读存储介质。 系统收集与通信会话相关联的实时传输控制协议消息,其中实时传输控制协议消息由通信会话中的设备生成,并且其中实时传输控制协议消息包括与 沟通会话 然后,基于实时传输控制协议消息,系统确定与通信会话相关联的安全状态。 系统还可以生成与通信会话相关联的安全状态的指示。 此外,系统可以基于每个参与者生成通信会话的安全状态的指示。
    • 6. 发明授权
    • Soft real-time load balancer
    • 软实时负载平衡器
    • US08161491B2
    • 2012-04-17
    • US12768458
    • 2010-04-27
    • Anjur Sundaresan KrishnakumarParameshwaran KrishnanMin LeeNavjot SinghShalini Yajnik
    • Anjur Sundaresan KrishnakumarParameshwaran KrishnanMin LeeNavjot SinghShalini Yajnik
    • G06F9/455G06F9/46G06F15/173
    • G06F9/4881
    • The present disclosure is based on a multi-core or multi-processor virtualized environment that comprises both time-sensitive and non-time-sensitive tasks. The present disclosure describes techniques that use a plurality of criteria to choose a processing resource that is to execute tasks. The present disclosure further describes techniques to re-schedule queued tasks from one processing resource to another processing resource, based on a number of criteria. Through load balancing techniques, the present invention both (i) favors the processing of soft real-time tasks arising from media servers and applications, and (ii) prevents “starvation” of the non-real-time general computing applications that co-exist with the media applications in a virtualized environment. These techniques, in the aggregate, favor the processing of soft real-time tasks while also reserving resources for non-real-time tasks. These techniques manage multiple processing resources to balance the competing demands of soft real-time tasks and of non-real-time tasks.
    • 本公开是基于包括时间敏感和非时间敏感任务的多核或多处理器虚拟化环境。 本公开描述了使用多个标准来选择要执行任务的处理资源的技术。 本公开进一步描述了基于多个标准将排队的任务重新调度为从一个处理资源到另一个处理资源的技术。 通过负载平衡技术,本发明(i)有利于由媒体服务器和应用产生的软实时任务的处理,以及(ii)防止共存的非实时通用计算应用的“饥饿” 媒体应用程序在虚拟化环境中。 总而言之,这些技术有利于处理软实时任务,同时为非实时任务预留资源。 这些技术管理多个处理资源,以平衡软实时任务和非实时任务的竞争需求。
    • 7. 发明申请
    • ON-DEMAND FEATURE SERVER ACTIVATION IN THE CLOUD
    • 云中的需求特征服务器启动
    • US20110239120A1
    • 2011-09-29
    • US12748131
    • 2010-03-26
    • Anjur S. KrishnakumarParameshwaran KrishnanNavjot SinghShalini Yajnik
    • Anjur S. KrishnakumarParameshwaran KrishnanNavjot SinghShalini Yajnik
    • G06F15/16H04L9/00G06F3/048G06F15/177
    • H04L63/0428H04L67/10
    • A feature activation system provides a mixed computing environment that includes a server and cloud computing. The hybrid model splits the execution of a communication feature between the cloud and the enterprise server installed at or with the enterprise. Service activation is linked to a portal that can communicate with either an intermediary system or directly with an entity executing computer programs in the cloud. When the customer desires to use a feature, the customer accesses the portal and activates the feature the enterprise desires. In the background, the portal instantiates a virtual machine, on any cloud platform, and then installs the feature with virtual machine on that cloud server. To execute feature, the enterprise server and the virtual machine exchange information between the server and the cloud and allow the feature to access the enterprise server or enterprise data. When the user has completed feature execution, the instance of the feature may be stopped and discarded and any data may be saved either at the enterprise or within the cloud.
    • 功能激活系统提供包括服务器和云计算的混合计算环境。 混合模型分割云与安装在企业或企业的企业服务器之间的通信功能的执行。 服务激活链接到可以与中介系统通信的门户,也可以直接与在云中执行计算机程序的实体进行通信。 当客户希望使用功能时,客户访问门户并激活企业所期望的功能。 在后台,门户在任何云平台上实例化虚拟机,然后在该云服务器上安装具有虚拟机的功能。 要执行功能,企业服务器和虚拟机在服务器和云之间交换信息,并允许该功能访问企业服务器或企业数据。 当用户完成特征执行时,可以停止和丢弃该特征的实例,并且可以在企业或云中保存任何数据。
    • 10. 发明授权
    • Fixed mobile convergence for audio and web conference sessions using barcodes
    • 使用条形码固定音频和网络会议会议的移动融合
    • US09479345B2
    • 2016-10-25
    • US13396583
    • 2012-02-14
    • Anjur S. KrishnakumarShalini Yajnik
    • Anjur S. KrishnakumarShalini Yajnik
    • G06F15/16H04L12/18
    • H04L12/1822H04L12/189
    • Method to transfer a communication session to a mobile device, including: receiving by use of a first communication channel an information message comprising an identification of the communication session and an identification of a communication client hosting the communication session; sending by use of a second communication channel a join request; joining the communication session; and sending by use of the second communication channel a confirmation message confirming the transfer of the communication session. Furthermore, a method to transfer a communication session from a mobile device to a nonparticipating computer, including: receiving by use of a first communication channel an information message comprising an identification of the nonparticipating conference-enabled computer; sending by use of a second communication channel a request to push the communication session to the nonparticipating computer; receiving a confirmation; and optionally closing the communication session on the mobile device.
    • 将通信会话传送到移动设备的方法,包括:通过使用第一通信信道接收信息消息,所述信息消息包括通信会话的标识和主持通信会话的通信客户端的标识; 通过使用第二通信信道发送加入请求; 加入通信会议; 以及通过使用所述第二通信信道发送确认所述通信会话的传送的确认消息。 此外,一种将通信会话从移动设备传送到非参与式计算机的方法,包括:通过使用第一通信信道接收包括非参与会议的计算机的标识的信息消息; 通过使用第二通信信道发送将通信会话推送到非参与计算机的请求; 收到确认; 并且可选地在移动设备上关闭通信会话。