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    • 2. 发明申请
    • METHOD FOR VERIFICATIONS AND FAST QOS ESTABLISHMENT
    • 验证和快速QOS建立的方法
    • US20100220665A1
    • 2010-09-02
    • US12159370
    • 2005-12-28
    • Saravanan GovindanHong ChengPek Yew Tan
    • Saravanan GovindanHong ChengPek Yew Tan
    • H04W72/04
    • H04L47/10H04L47/14H04L47/24H04L47/2491H04L63/123H04W12/10H04W28/18
    • A wireless communication system is provided for rapidly establishing the QoS resource on different communication networks. In this system, the NAP (104) evaluates a network resource used by the MT (106), and generates the QoS history information unit indicating the evaluation result. The AAA (140) authenticates the QoS history information unit generated by the NAP (104). The NAP (104) transmits the authenticated QoS history information unit to the MT (106). The MT (106) request for a resource establishment to the NAP (304) when switching the communicating party from the NAP (104) to the NAP (304), and transmits the QoS history information unit. The NAP (304) verifies the authenticity of the QoS history information unit to the AAA (140) when receiving the request for resource establishment from the MT (106) and allocates the network resource to the MT (106) based on the QoS history information unit.
    • 提供了一种用于在不同通信网络上快速建立QoS资源的无线通信系统。 在该系统中,NAP(104)评估MT使用的网络资源(106),并生成表示评估结果的QoS历史信息单元。 AAA(140)认证由NAP(104)生成的QoS历史信息单元。 NAP(104)将认证的QoS历史信息单元发送到MT(106)。 当将通信方从NAP(104)切换到NAP(304)时,MT(106)请求向NAP(304)的资源建立,并且发送QoS历史信息单元。 当从MT(106)接收资源建立请求时,NAP(304)验证QoS历史信息单元对AAA(140)的真实性,并且基于QoS历史信息将网络资源分配给MT(106) 单元。
    • 3. 发明授权
    • Method for verifications and fast QoS establishment
    • 用于验证和快速建立QoS的方法
    • US08195175B2
    • 2012-06-05
    • US12159370
    • 2005-12-28
    • Saravanan GovindanHong ChengPek Yew Tan
    • Saravanan GovindanHong ChengPek Yew Tan
    • H04W72/00
    • H04L47/10H04L47/14H04L47/24H04L47/2491H04L63/123H04W12/10H04W28/18
    • A wireless communication system is provided for rapidly establishing the QoS resource on different communication networks. In this system, the NAP evaluates a network resource used by the MT, and generates the QoS history information unit indicating the evaluation result. The AAA authenticates the QoS history information unit generated by the NAP. The NAP transmits the authenticated QoS history information unit to the MT. The MT request for a resource establishment to the NAP when switching the communicating party from the NAP to the NAP, and transmits the QoS history information unit. The NAP verifies the authenticity of the QoS history information unit to the AAA when receiving the request for resource establishment from the MT and allocates the network resource to the MT based on the QoS history information unit.
    • 提供了一种用于在不同通信网络上快速建立QoS资源的无线通信系统。 在该系统中,NAP评估MT使用的网络资源,并生成表示评估结果的QoS历史信息单元。 AAA认证由NAP生成的QoS历史信息单元。 NAP将认证的QoS历史信息单元发送到MT。 在将通信方从NAP切换到NAP时,MT请求到NAP的资源建立,并发送QoS历史信息单元。 当从MT接收到资源建立请求时,NAP将对QoS历史信息单元的真实性进行验证,并根据QoS历史信息单元将网络资源分配给MT。
    • 5. 发明授权
    • System and method for negotiation of WLAN entity
    • WLAN实体协商的系统和方法
    • US08045531B2
    • 2011-10-25
    • US10591184
    • 2005-03-01
    • Hong ChengPek Yew TanSaravanan Govindan
    • Hong ChengPek Yew TanSaravanan Govindan
    • H04W4/00
    • H04W28/18H04W8/005H04W28/08H04W84/12
    • A method for negotiations between various entities of a wireless local area network (WLAN) including negotiations between controlling nodes (CNs) and wireless access points (WAPs) and negotiations between WAPs is disclosed. These negotiations are used for the purpose of establishing the capabilities of the various entities, determining how such capabilities may be optimally divided among the negotiating entities and then dividing the capabilities among the entities based on this determination. The capabilities include those required for the operation, control and management of the WLAN entities and the encompassing WLAN. The disclosed method introduces means for flexibly accommodating the varying degrees of differences in capabilities among the WLAN entities between the WLAN entities including dynamic changes in WLAN topologies.
    • 公开了一种用于在包括控制节点(CN)和无线接入点(WAP)之间的协商)以及WAP之间的协商的无线局域网(WLAN)的各种实体之间进行协商的方法。 这些谈判用于建立各种实体的能力,确定如何在协商实体之间如何最佳地划分这些能力,然后基于此确定来划分实体之间的能力。 这些功能包括WLAN实体和包含WLAN的操作,控制和管理所需的功能。 所公开的方法引入了用于灵活地适应WLAN实体之间的WLAN实体之间不同程度的差异性差异的装置,包括WLAN拓扑中的动态变化。
    • 6. 发明申请
    • System and Method for Negotiation of Wlan Entity
    • Wlan实体谈判系统与方法
    • US20070258414A1
    • 2007-11-08
    • US10591184
    • 2005-03-01
    • Hong ChengPek Yew TanSaravanan Govindan
    • Hong ChengPek Yew TanSaravanan Govindan
    • H04Q7/24
    • H04W28/18H04W8/005H04W28/08H04W84/12
    • A method for negotiations between various entities of a wireless local area network (WLAN) including negotiations between controlling nodes (CNs) and wireless access points (WAPs) and negotiations between WAPs is disclosed. These negotiations are used for the purpose of establishing the capabilities of the various entities, determining how such capabilities may be optimally divided among the negotiating entities and then dividing the capabilities among the entities based on this determination. The capabilities include those required for the operation, control and management of the WLAN entities and the encompassing WLAN. The disclosed method introduces means for flexibly accommodating the varying degrees of differences in capabilities among the WLAN entities between the WLAN entities including dynamic changes in WLAN topologies.
    • 公开了一种用于在包括控制节点(CN)和无线接入点(WAP)之间的协商)以及WAP之间的协商的无线局域网(WLAN)的各种实体之间进行协商的方法。 这些谈判用于建立各种实体的能力,确定如何在协商实体之间如何最佳地划分这些能力,然后基于此确定来划分实体之间的能力。 这些功能包括WLAN实体和包含WLAN的操作,控制和管理所需的功能。 所公开的方法引入了用于灵活地适应WLAN实体之间的WLAN实体之间不同程度的差异性差异的装置,包括WLAN拓扑中的动态变化。
    • 8. 发明授权
    • Method for selective distribution of communications infrastructure
    • 选择性分配通信基础设施的方法
    • US08098641B2
    • 2012-01-17
    • US12159379
    • 2005-12-28
    • Saravanan GovindanPek Yew Tan
    • Saravanan GovindanPek Yew Tan
    • H04W4/00
    • H04W84/18H04W88/04
    • A wireless communication system is provided for configuring a multihop chain while suppressing the cost and complexity. In this system, one network controller (NC) (105) for executing the infrastructure function distributes the scheduling information to a plurality of communication entities (WCE) (110, 115, 120, 210, 215) configuring the multihop chain for alternating operation in the infrastructure function mode and the client function mode. The WCE (110, 115, 120, 210, 215) alternately operates the infrastructure function and the client function according to the distributed control and operations information.
    • 提供了一种无线通信系统,用于配置多跳链,同时抑制成本和复杂性。 在该系统中,用于执行基础设施功能的一个网络控制器(NC)(105)将调度信息分配到多个通信实体(WCS)(110,115,120,210,215),该多个通信实体(110,115,120,210,215)配置用于交替操作的多跳链 基础设施功能模式和客户端功能模式。 WCE(110,115,120,210,215)根据分布式控制和操作信息交替地运行基础架构功能和客户端功能。
    • 9. 发明申请
    • SYSTEM AND METHOD FOR MOBILITY IN MULTIHOP NETWORKS
    • 多媒体网络中的移动性系统与方法
    • US20090290494A1
    • 2009-11-26
    • US12097688
    • 2006-10-17
    • Saravanan GovindanPek Yew Tan
    • Saravanan GovindanPek Yew Tan
    • H04B7/14H04J1/16
    • H04W40/38
    • A network controller (NC) (105) that reduces the overhead exchanges for mobility events in a communications network is disclosed. Such a communications network is constituted by a wireless multihop communications network comprising a multihop chain (MH) (130) that wirelessly connects in series wireless communications entities (WCE) (110, 115) for relaying and the network controller as a first entity. Within the wireless multihop communications network a mobile node (MN) (125) wirelessly communicates with the wireless communications entity (115) located at the end of the multihop chain (130). In a communications network, the network controller (105) manages the multihop chain (130), and upon determining that the communications path has to be changed by a mobility event (ME) (141), it establishes a wireless communication between the mobile node (125) and a wireless communications entity (120) by expanding (132) the multihop chain (130).
    • 公开了减少通信网络中的移动性事件的开销交换的网络控制器(NC)(105)。 这样的通信网络由无线多跳通信网络构成,该无线多跳通信网络包括无线连接用于中继的无线通信实体(W)(110,115)和作为第一实体的网络控制器的多跳链(MH)(130)。 在无线多跳通信网络内,移动节点(MN)(125)与位于多跳链(130)的末端的无线通信实体(115)无线通信。 在通信网络中,网络控制器(105)管理多跳链(130),并且在确定必须由移动性事件(ME)(141)改变通信路径时,它建立移动节点之间的无线通信 (125)和无线通信实体(120),扩展(132)多跳链(130)。