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    • 31. 发明申请
    • COMMUNICATIONS TERMINALS AND COMMUNICATIONS METHOD
    • 通信终端和通信方法
    • US20120083200A1
    • 2012-04-05
    • US13377894
    • 2011-04-11
    • Tien Ming Benjamin KohPeng BinPek Yew TanYosuke MatsushitaYuki Ohira
    • Tien Ming Benjamin KohPeng BinPek Yew TanYosuke MatsushitaYuki Ohira
    • H04W52/02H04W68/00H04W60/00H04B7/14
    • H04L12/12G06F1/3203H04L12/2807Y02D50/20Y02D50/40
    • A communications terminal registered as a controlled terminal in a controlling terminal which controls the controlled terminal via a communications network, the communications terminal includes a receiving unit (15020) which receives a sleep message including information indicating whether or not the controlling terminal is sleeping and information indicating a timing when the controlling terminal leaves sleep mode and wakes up; a detecting unit (15030) which detects a transmission of a registration request for requesting that a new terminal be registered in the controlling terminal as a new controlled terminal, the new terminal being another communications terminal not yet registered in the controlling terminal; and a notifying unit (15040) which determines whether or not the controlling terminal is sleeping based on the sleep message, and notifies the new terminal is of the timing by sending the sleep message when the controlling terminal is sleeping and when the transmission of the registration request is detected.
    • 在通过通信网络控制控制终端的控制终端中登记为受控终端的通信终端,所述通信终端包括接收单元(15020),接收单元(15020)接收包括指示所述控制终端是否正在睡眠的信息和信息的休眠消息 指示控制终端离开睡眠模式并唤醒的时间; 检测单元(15030),其检测用于请求新终端在控制终端中注册的注册请求的发送作为新的受控终端,所述新终端是尚未登记在控制终端中的另一通信终端; 以及通知单元(15040),其基于所述睡眠消息来确定所述控制终端是否正在休眠,并且当所述控制终端正在休眠时通过发送所述睡眠消息来通知所述新终端是定时的,并且当所述登记 检测到请求。
    • 36. 发明申请
    • LINK MANAGEMENT SYSTEM
    • 链接管理系统
    • US20090037567A1
    • 2009-02-05
    • US11995198
    • 2006-07-14
    • Tien-Ming Benjamin KohHong ChengTetsuro MorimotoTakashi Aramaki
    • Tien-Ming Benjamin KohHong ChengTetsuro MorimotoTakashi Aramaki
    • G06F15/173
    • H04L69/14
    • A technology is disclosed for efficiently managing the peer relationship, and in particular for allowing to discover which of one or more communication links of the network entity is connected to another network entity having the same identifier. According to this technology, for example, the ID Controller (202) of the network entity (201) generates a quasi unique identifier for the network entity from all the physical address on its multiple interfaces. The peer relationship controller (203) verifies if the generated quasi unique identifier is overlapping with that of another network entity. The link control logic (205), upon sending a message to the network entity associated with the unique identifier, determines correspondence of the unique identifier with the peer network entity to interchangeably use the communication links (link 1 (211) to link n (213)).
    • 公开了一种用于有效管理对等关系的技术,特别是允许发现网络实体的一个或多个通信链路中的哪一个连接到具有相同标识符的另一个网络实体。 根据该技术,例如,网络实体(201)的ID控制器(202)从其多个接口上的所有物理地址生成网络实体的准唯一标识符。 对等关系控制器(203)验证所生成的准唯一标识符是否与另一网络实体的重复。 链路控制逻辑(205)在向与该唯一标识符相关联的网络实体发送消息时确定唯一标识符与对等网络实体的对应关系,以便可互换地使用通信链路(链路1(211))链接n(213 ))。
    • 37. 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。
    • 39. 发明授权
    • Radio communication terminal and network side communication apparatus
    • 无线通信终端和网络侧通信装置
    • US08270368B2
    • 2012-09-18
    • US12066061
    • 2006-09-08
    • Jun HiranoTien-Ming Benjamin KohChan Wah NgPek Yew TanTakashi Aramaki
    • Jun HiranoTien-Ming Benjamin KohChan Wah NgPek Yew TanTakashi Aramaki
    • H04W4/00H04B7/14H04B7/00
    • H04W36/0083H04W36/14H04W84/12H04W88/06
    • A technology is disclosed for achieving fast and reliable handover. According to this technology, in the network composition where a network coverage area of the cellular base station 105 and network coverage areas of plural WLAN AP (Wireless LAN access point) 110, 115, 120 and 130 overlaps, the roaming mobile node (mobile terminal) 100 stores the listened beacon information from each WLAN AP. The mobile node can promptly perform the handover procedures without waiting for listening to the next beacon by acquiring the beacon information of WLAN AP which is a handover target from the stored information at the instant of determining to do handover to a new WLAN AP. Furthermore, the mobile node can store information on stability of the network connection if it would be connected to each WLAN AP, and determine which WLAN AP is suitable for a handover target by considering the stability.
    • 公开了一种实现快速可靠的切换的技术。 根据该技术,在蜂窝基站105的网络覆盖区域和多个WLAN AP(无线LAN接入点)110,115,120,130的网络覆盖区域重叠的网络组合中,漫游移动节点(移动终端 )100存储来自每个WLAN AP的收听的信标信息。 移动节点可以在确定切换到新的WLAN AP的瞬间从存储的信息中获取作为切换目标的WLAN AP的信标信息,从而可以迅速地执行切换过程而不用等待下一个信标的收听。 此外,如果移动节点将连接到每个WLAN AP,则可以存储关于网络连接的稳定性的信息,并且通过考虑稳定性来确定哪个WLAN AP适合于切换目的地。