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    • 27. 发明申请
    • Network Node and Mobile Terminal
    • 网络节点和移动终端
    • US20100034170A1
    • 2010-02-11
    • US12527548
    • 2008-02-22
    • Jun HiranoChun Keong Benjamin LimChan Wah NgTien Ming KohPek Yew Tan
    • Jun HiranoChun Keong Benjamin LimChan Wah NgTien Ming KohPek Yew Tan
    • H04W36/00
    • H04L47/10H04L47/283
    • Disclosed in a technique for more accurately checking a network condition such as a transmission delay generated in packet transmission between two nodes and other network conditions. A buffering node 10 is a network node having the function of transferring a packet. When a packet received by a network interface 11 is buffered in a cache 14, a buffer time processor 12 refers to an internal clock 13 to record the time of that moment (the buffered time). Then, when this packet is transferred, the buffer time processor refers again to the current time indicated by the internal clock and subtracts the buffered time from the current time to calculate a buffering time generated by a buffering delay in packet transmission. This buffering time is added to the packet and transmitted.
    • 公开了一种更准确地检查诸如在两个节点之间的分组传输中产生的传输延迟和其他网络状况的网络状况的技术。 缓冲节点10是具有传送分组功能的网络节点。 当由网络接口​​11接收的分组被缓存在高速缓存14中时,缓冲时间处理器12参考内部时钟13来记录该时刻(缓冲时间)。 然后,当该分组被传送时,缓冲时间处理器再次参考由内部时钟指示的当前时间,并从当前时间减去缓冲时间,以计算由分组传输中的缓冲延迟产生的缓冲时间。 该缓冲时间被添加到分组并被发送。
    • 30. 发明申请
    • Communication Node and Communication Control Method
    • 通信节点和通信控制方法
    • US20080259848A1
    • 2008-10-23
    • US11817643
    • 2006-03-03
    • Keigo AsoJun HiranoTien-Ming Benjamin KohChan Wah NgPek Yew Tan
    • Keigo AsoJun HiranoTien-Ming Benjamin KohChan Wah NgPek Yew Tan
    • H04Q7/00
    • H04L29/12311H04L29/12952H04L61/2084H04L61/6077H04W8/10H04W80/04
    • A technique is disclosed whereby, in the case of wherein a communication node includes both a mobility management function and a multihoming function, based on a condition that occurs due to moving, an appropriate address can be selected from multiple addresses in a multihomed state. According to the technique, a mobility condition determination unit 126, provided in an MIP controller 120 that manages moving of a communication node, obtains and examines various conditions that has occurred as a communication node is moving, selects an appropriate HoA (e.g., the home address of an MN1) for the current connection situation, and transmits, to a multihoming controller 130, a notification indicating that a set of the selected HoA and a CoA is appropriate addresses to be used. Upon receiving the notification from the mobility condition determination unit, the multihoming controller transmits, to the MIP controller, an address (Addr2) consonant with the received HoA, and the MIP controller performs packet communication using the HoA or the CoA consonant with the address.
    • 公开了一种技术,其中,在通信节点同时包括移动性管理功能和多重归属功能的情况下,基于由于移动而发生的状况,可以从多宿主状态中的多个地址中选择适当的地址。 根据该技术,设置在管理移动通信节点的MIP控制器120中的移动性条件确定单元126获取并检查通信节点正在移动时已经发生的各种状况,选择适当的HoA(例如,家庭 MN1的地址),并且向多重控制器130发送指示所选HoA和CoA的集合是要被使用的适当地址的通知。 在从移动性条件确定单元接收到通知的情况下,多宿主控制器向MIP控制器发送与所接收的HoA协调的地址(Addr2),并且MIP控制器使用HoA或与该地址的CoA辅音进行分组通信。