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    • 1. 发明申请
    • OPTIMIZATIONS FOR RELAY COMMUNICATIONS
    • 继电器通讯优化
    • WO2016073984A3
    • 2016-09-15
    • PCT/US2015059743
    • 2015-11-09
    • INTERDIGITAL PATENT HOLDINGS INC
    • KAUR SAMIANHELMY AMIRKARAMPATSIS DIMITRIOSWANG GUANZHOUAHMAD SAADWATFA MAHMOUDCANONNE-VELASQUEZ LOIC
    • H04W24/04H04W88/04
    • H04W24/04H04B7/15557H04B7/2606H04W88/04
    • Procedures for dynamically activating and deactivating proximity services (ProSe) enabled WTRU-to-Network (NW) relays are described. Control plane procedures to establish a link between remote WTRUs and WTRU-NW relays are described. Procedures for performing mobility from infrastructure mode to relay mode and relay mode to infrastructure mode are described. Procedures for performing session continuity and IP address preservation are described. Triggers for session continuity are defined for use by the WTRU. Methods to support multicast relay for an out-of-coverage WTRU, including determining Temporary Mobile Group Identities (TMGIs) are also described. Methods to register and update multimedia broadcast multicast services (MBMS) session refresh timers in a relay WTRU when a new WTRU is added, when a WTRU leaves the group, or when a session is updated in the network are also described. Methods for supporting system information block (SIB) forwarding are also described.
    • 描述了动态激活和去激活邻近服务(ProSe)的WTRU到网络(NW)中继的过程。 描述了建立远程WTRU与WTRU-NW中继之间链路的控制平面过程。 描述了从基础设施模式到中继模式和中继模式到基础架构模式的移动性的过程。 描述执行会话连续性和IP地址保存的过程。 用于会话连续性的触发器被定义为由WTRU使用。 还描述了支持覆盖范围内的WTRU的组播中继的方法,包括确定临时移动组标识(TMGI)。 还描述了当新的WTRU被添加时,当WTRU离开组时,或者当在网络中更新会话时,在中继WTRU中注册和更新多媒体广播多播服务(MBMS)会话刷新定时器的方法。 还描述了用于支持系统信息块(SIB)转发的方法。
    • 2. 发明申请
    • METHOD AND APPARATUS FOR PERFORMING DEVICE-TO-DEVICE DISCOVERY
    • 用于执行设备到设备发现的方法和设备
    • WO2014031829A3
    • 2014-04-17
    • PCT/US2013056140
    • 2013-08-22
    • INTERDIGITAL PATENT HOLDINGS
    • POITAU GWENAELPELLETIER GHYSLAINMARINIER PAULPANI DIANAKAUR SAMIANPELLETIER BENOIT
    • H04W76/02H04L29/08H04W8/00
    • H04W40/246H04L67/16H04W8/005H04W76/023
    • Methods and apparatus for performing device-to-device (D2D) discovery are described. A service discovery process may include a discoverable device (e.g., a wireless transmit/receive unit (WTRU)) sending a discovery request, over a wireless connection, for a radio resource for the purpose of performing a transmission for radio frequency (RF) proximity detection for a given service. The WTRU may receive a discovery response including a configuration for RF proximity detection from a network, which configuration may be associated to the service. The configuration for RF proximity may be received by dedicated signaling, (e.g., physical downlink shared channel (PDSCH)), in particular for a discoverable WTRU. The configuration for RF proximity may be received on a broadcast channel, (e.g., a discovery shared channel (DISCH)), in particular for a monitoring WTRU, and may include one or more service identities, each associated with an RF proximity detection configuration, or a validity information and a measurement configuration.
    • 描述了用于执行设备到设备(D2D)发现的方法和设备。 服务发现过程可以包括通过无线连接向无线电资源发送发现请求的可发现设备(例如,无线发射/接收单元(WTRU)),用于执行射频(RF)接近的传输 检测给定的服务。 WTRU可以从网络接收包括用于RF邻近度检测的配置的发现响应,该配置可以与服务相关联。 用于RF邻近的配置可以由专用信令(例如,物理下行链路共享信道(PDSCH))来接收,特别是用于可发现的WTRU。 RF邻近的配置可以在广播信道(例如,发现共享信道(DISCH))上被接收,特别是用于监视WTRU,并且可以包括一个或多个服务身份,每个服务身份与RF邻近度检测配置相关联, 或有效性信息和测量配置。
    • 9. 发明申请
    • PACKET DATA CONVERGENCE PROTOCOL (PDCP) PLACEMENT
    • 分组数据汇总协议(PDCP)放置
    • WO2014113686A3
    • 2014-09-12
    • PCT/US2014012067
    • 2014-01-17
    • INTERDIGITAL PATENT HOLDINGS
    • DEENOO YUGESWARKAUR SAMIANPRAGADA RAVIKUMAR V
    • H04W16/32H04W36/02H04W48/12
    • H04W36/0055H04W16/32H04W48/12
    • Embodiments contemplate Small Cell Enhancements such as PDCP Placement and impact on control and data plane procedures. Embodiments contemplate small-cell enhancements such as they relate to dual-connectivity scenarios. Different architecture models and their impact on procedural aspects are contemplated. Different RAN, protocol stack and radio bearer (RB) architectures along with their implications are described. These architectures may be applicable to one or more of control plane that may terminate at the macro. Also, a small-cell that may be capable of supporting RLC modes and/or that may be capable of supporting MAC functionality is contemplated. A small-cell may be capable of supporting bidirectional physical channels. Also, there could be an aggregation point (either at the macro eNB or at a different physical or logical RAN node) for Sl-U interface termination. The Small Cell eNB (SCeNB) could be in control of the Macro eNB.
    • 实施例考虑小型电池增强,例如PDCP放置和对控制和数据平面程序的影响。 实施例考虑小单元增强,例如它们涉及双连接场景。 考虑了不同的架构模型及其对程序方面的影响。 描述了不同的RAN,协议栈和无线承载(RB)架构及其含义。 这些架构可以适用于可以终止于宏的控制平面中的一个或多个。 此外,考虑了可能支持RLC模式和/或可能支持MAC功能的小小区。 小单元可能能够支持双向物理信道。 此外,对于Sl-U接口终止,可能存在聚合点(在宏eNB或不同的物理或逻辑RAN节点处)。 小型小区eNB(SCeNB)可以在宏eNB的控制中。