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    • 1. 发明授权
    • Connection setup using flexible protocol configuration
    • 连接设置使用灵活的协议配置
    • US07990998B2
    • 2011-08-02
    • US11087187
    • 2005-03-22
    • Rajat PrakashGavin Bernard HornNikhil JainRamin Rezaiifar
    • Rajat PrakashGavin Bernard HornNikhil JainRamin Rezaiifar
    • H04L12/42
    • H04L12/2898H04L63/0428H04L63/06H04L63/08H04L67/04H04L67/34H04L69/24H04W28/18H04W76/10
    • A user terminal establishes a session with a first access point (AP0) and obtains a token associated with modem configuration information used for radio communication. The user terminal thereafter establishes a connection with a second access point (AP1) by sending the token. AP1 receives the token, obtains the modem configuration information associated with the token, and initializes an air interface protocol stack with the modem configuration information to obtain a modem-specific protocol stack for the user terminal. AP1 sends a response indicating successful connection setup. The user terminal and AP1 thereafter communicate in accordance with the modem-specific protocol stack. AP1 may attempt to fetch the session for the user terminal from AP0. If this is successful, then AP1 updates the protocol stack with the session information to obtain a complete protocol stack for the user terminal. The user terminal and AP1 thereafter communicate with the complete protocol stack.
    • 用户终端与第一接入点(AP0)建立会话,并且获得与用于无线电通信的调制解调器配置信息相关联的令牌。 用户终端随后通过发送令牌建立与第二接入点(AP1)的连接。 AP1接收令牌,获取与令牌相关联的调制解调器配置信息,并用调制解调器配置信息初始化空中接口协议栈,以获得用户终端的调制解调器专用协议栈。 AP1发送一个响应,指示连接建立成功。 用户终端和AP1此后根据调制解调器专用协议栈进行通信。 AP1可以尝试从AP0获取用户终端的会话。 如果这样成功,则AP1使用会话信息更新协议栈,以获得用户终端的完整协议栈。 用户终端和AP1此后与完整的协议栈进行通信。
    • 3. 发明申请
    • Connection setup using flexible protocol configuration
    • 连接设置使用灵活的协议配置
    • US20060133409A1
    • 2006-06-22
    • US11087187
    • 2005-03-22
    • Rajat PrakashGavin HornNikhil JainRamin Rezaiifar
    • Rajat PrakashGavin HornNikhil JainRamin Rezaiifar
    • H04L12/42H04J3/02
    • H04L12/2898H04L63/0428H04L63/06H04L63/08H04L67/04H04L67/34H04L69/24H04W28/18H04W76/10
    • A user terminal establishes a session with a first access point (AP0) and obtains a token associated with modem configuration information used for radio communication. The user terminal thereafter establishes a connection with a second access point (AP1) by sending the token. AP1 receives the token, obtains the modem configuration information associated with the token, and initializes an air interface protocol stack with the modem configuration information to obtain a modem-specific protocol stack for the user terminal. AP1 sends a response indicating successful connection setup. The user terminal and AP1 thereafter communicate in accordance with the modem-specific protocol stack. AP1 may attempt to fetch the session for the user terminal from AP0. If this is successful, then AP1 updates the protocol stack with the session information to obtain a complete protocol stack for the user terminal. The user terminal and AP1 thereafter communicate with the complete protocol stack.
    • 用户终端与第一接入点(AP 0)建立会话,并且获得与用于无线电通信的调制解调器配置信息相关联的令牌。 用户终端随后通过发送令牌建立与第二接入点(AP 1)的连接。 AP1接收令牌,获得与令牌相关联的调制解调器配置信息,并用调制解调器配置信息初始化空中接口协议栈,以获得用户终端的调制解调器专用协议栈。 AP 1发送一个响应,指示连接建立成功。 用户终端和AP 1此后根据调制解调器特定协议栈进行通信。 AP 1可以尝试从AP 0获取用户终端的会话。 如果这样成功,则AP 1使用会话信息更新协议栈,以获得用户终端的完整协议栈。 用户终端和AP 1此后与完整的协议栈进行通信。
    • 10. 发明申请
    • AUTOMATIC NEIGHBOR RELATION (ANR) FUNCTIONS FOR RELAY NODES, HOME BASE STATIONS, AND RELATED ENTITIES
    • 自动邻域关系(ANR)继电器,家庭基站和相关实体的功能
    • US20110310791A1
    • 2011-12-22
    • US13165526
    • 2011-06-21
    • Rajat PrakashOsok SongGavin Bernard Horn
    • Rajat PrakashOsok SongGavin Bernard Horn
    • H04W16/00H04W40/00
    • H04W24/02H04L61/103H04W92/045H04W92/20
    • Certain aspects of the present disclosure provide methods and apparatus for implementing Automatic Neighbor Relation (ANR) functions for relay nodes (RNs), home base stations (e.g., home evolved Node Bs (HeNBs), and related entities (e.g., donor evolved Node Bs (DeNBs) and HeNB gateways). X2 is designed to be an end-to-end protocol between two evolved Node Bs (eNBs). However, for the case of RNs or HeNBs, this protocol may involve a proxy function (e.g., where the DeNB acts a proxy for the RN). This creates several issues, such as how to manage a potentially very large set of cells under a gateway and how to route S1 messages used for X2 endpoint discovery. Therefore, certain aspects of the present disclosure generally relate to methods and apparatus for maintaining the X2 connections intelligently and hiding the large number of nodes from the X2 endpoints based on various triggers.
    • 本公开的某些方面提供了用于实现中继节点(RN),家庭基站(例如,家庭演进节点B(HeNB))和相关实体(例如,捐赠演进节点B)的自动相邻关系(ANR)功能的方法和装置 (DeNB)和HeNB网关),X2被设计为两个演进的节点B(eNB)之间的端到端协议,然而,对于RN或HeNB的情况,该协议可以涉及代理功能(例如, DeNB为RN的代理),这产生了几个问题,例如如何管理网关下的潜在的非常大的小区集合,以及如何路由用于X2端点发现的S1消息,因此本发明的某些方面 一般涉及用于基于各种触发来智能地维护X2连接并且从X2端点隐藏大量节点的方法和装置。