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    • 4. 发明授权
    • Transport high availability via acknowledge management
    • 通过确认管理传输高可用性
    • US08352558B2
    • 2013-01-08
    • US12368312
    • 2009-02-10
    • Victor BoctorTodd C. LuttinenJeffrey B. KayJesse M. DoughertyMalcom Pearson
    • Victor BoctorTodd C. LuttinenJeffrey B. KayJesse M. DoughertyMalcom Pearson
    • G06F15/16
    • H04L51/06H04L51/30
    • Architecture that facilitates transport high availability for messaging services by providing the ability of a receiving entity (e.g., receiving message transfer agent (MTA)) to detect if a sending entity (e.g., sending MTA or client) is a legacy sending entity. When the receiving entity detects that the sending entity is a legacy system, by advertising transport high availability capability to the sending entity, if the sending entity does not opt-in to this capability, the receiving entity keeps the sending entity client “on hold”, that is, waiting for an acknowledgement (ACK) until the receiving entity delivers the message to the next hops (immediate destinations). This approach maintains at least two copies of the message until the message is successfully delivered (to the next hop(s)). Hence, if the legacy sending entity or the receiving entity fails, the message is still delivered successfully.
    • 通过提供接收实体(例如,接收消息传送代理(MTA))的能力来检测发送实体(例如,发送MTA或客户端)是否是传统发送实体,促进了消息传送服务的高可用性的架构。 当接收实体检测到发送实体是传统系统时,通过向发送实体发送传输高可用性能力,如果发送实体不选择该能力,则接收实体保持发送实体客户端处于保持状态, 是等待确认(ACK),直到接收实体将消息传递到下一跳(即时目的地)。 该方法维护消息的至少两个副本,直到消息成功传递(下一跳)为止。 因此,如果传统发送实体或接收实体失败,则该消息仍然成功传送。
    • 7. 发明申请
    • OPTIMIZATION OF OVER-THE-TOP (OTT) SERVICES ON CARRIER NETWORKS
    • 运输网络优化(OTT)服务优化
    • US20140313902A1
    • 2014-10-23
    • US13963779
    • 2013-08-09
    • John D. BrunerRod G. FleckJeffrey B. KayGursharan Singh Sidhu
    • John D. BrunerRod G. FleckJeffrey B. KayGursharan Singh Sidhu
    • H04W28/02
    • H04W28/0236H04L65/1069H04L65/80H04W28/0289
    • Methods and apparatus for executing a client-based, over-the-top (OTT) application, the client-based OTT application for maintaining communications with a second communication device, comprising, in one embodiment, a first transceiver for transmitting and receiving user traffic, a memory for storing processor-executable instructions, and a processor, coupled to the transceiver and the memory, for executing the processor-executable instructions that cause the wireless communication device to establish a first control plane connection, establish a second control plane connection, establish a first data plane for transporting the user traffic, the first data plane connection relating to the first control plane connection, establish a second data plane connection for transporting the user traffic if at least one predetermined event has occurred, the second data plane connection related to the second control plane connection, and to transmit and receive the user traffic over the second data plane connection via the first transceiver.
    • 用于执行基于客户端的超顶(OTT)应用的方法和装置,用于维持与第二通信设备的通信的基于客户端的OTT应用,在一个实施例中包括用于发送和接收用户业务的第一收发器 ,用于存储处理器可执行指令的存储器和耦合到所述收发器和所述存储器的处理器,用于执行所述处理器可执行指令,所述指令使所述无线通信设备建立第一控制平面连接,建立第二控制平面连接, 建立用于传输用户业务的第一数据平面,与第一控制平面连接相关的第一数据平面连接,如果发生了至少一个预定事件,建立用于传送用户业务的第二数据平面连接,第二数据平面连接相关 到第二控制平面连接,并且通过第二数据发送和接收用户业务 通过第一收发器进行平面连接。
    • 9. 发明申请
    • Secure Transactional Communication
    • 安全交易沟通
    • US20080263156A1
    • 2008-10-23
    • US11736487
    • 2007-04-17
    • Mihai CosteaJeffrey B. KayJesse DoughertyMayerber Carvalho NetoJain ChandreshMayank Mehta
    • Mihai CosteaJeffrey B. KayJesse DoughertyMayerber Carvalho NetoJain ChandreshMayank Mehta
    • G06F15/16
    • H04L51/12H04L51/28
    • Systems for providing sign-up email addresses are disclosed herein. A user may set up a sign-up email address for receiving emails from a trusted, Internet-based enterprise. The user may set up a dedicated mailbox folder associated with the sign-up email address or enterprise. The email server may automatically direct emails coming from that enterprise into that folder. To “unsubscribe,” the user needs only to delete the folder or the sign-up address. Emails from the enterprise to the sign-up address may be highlighted in the user's main inbox. Thus, the user may be assured that any such email is truly from the enterprise, and not a phishing expedition or spam. Such systems also provide the user with effective tools to recognize phish or spam emails that appear to be from the trusted enterprise and not to act on them.
    • 本文公开了用于提供注册电子邮件地址的系统。 用户可以设置注册电子邮件地址来接收来自受信任的基于互联网的企业的电子邮件。 用户可以设置与注册电子邮件地址或企业相关联的专用邮箱文件夹。 电子邮件服务器可以自动将来自该企业的电子邮件引导到该文件夹​​中。 要“取消订阅”,用户只需删除该文件夹或注册地址即可。 电子邮件从企业到注册地址可能会在用户的主收件箱中突出显示。 因此,用户可以放心,任何这样的电子邮件真的来自企业,而不是网络钓鱼攻击或垃圾邮件。 这样的系统还为用户提供了有效的工具来识别似乎来自受信企业的网络钓鱼或垃圾邮件,而不是对它们采取行动。
    • 10. 发明授权
    • Confidential mail with tracking and authentication
    • US09847977B2
    • 2017-12-19
    • US11771971
    • 2007-06-29
    • Trevor W. FreemanMayank MehtaJeremy de SouzaJeffrey B. Kay
    • Trevor W. FreemanMayank MehtaJeremy de SouzaJeffrey B. Kay
    • H04L9/32H04L29/06
    • H04L63/0442H04L63/126H04L63/166
    • A method for confidential electronic communication between a sender workstation and a receiver workstation is provided, whereby privacy is guaranteed for the electronic communications transmitted over the public Internet. The method of confidential communication is equipped with message tracking and message receipt verification. The system for implementing the method includes a sender server that creates a session content encryption key along with a message envelope that includes a content encryption key encrypted message and a confidential mail token. The content encryption key is stored securely inside the sender organization's system which transmits the message envelope to an intended recipient. The intended recipient processes the message envelope in order to generate a message receipt verification, which is transmitted to the sender. The message receipt verification is processed by the sender server to verify that the message envelope reached the intended recipient. The message receipt verification, which is comprised of the confidential mail token and unique verification data generated by the intended recipient allows the sender server to verify that the message envelope reached the intended receiver and that the message envelope identified as received is authentic. Following verification that the message transmitted by the sender reached the intended receiver and is authorized, the sender transmits the content encryption key to the intended receiver.