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    • 1. 发明申请
    • FLEXIBLE D2D DISCOVERY
    • 灵活的D2D发现
    • WO2016164670A1
    • 2016-10-13
    • PCT/US2016/026568
    • 2016-04-08
    • INTERDIGITAL PATENT HOLDINGS, INC.
    • PELLETIER, BenoitTU, Chao-ChengWATFA, MahmoudWANG, GuanzhouFREDA, Martino, M.
    • H04W72/02H04W76/02
    • H04W72/02H04W8/005H04W76/14
    • Systems, methods, and instrumentalities are disclosed for applying flexible D2D discovery. A first wireless transmit/receive unit (WTRU) may determine a duration of a transmission to a second WTRU within a scheduling period. The first WTRU may determine a time offset for the transmission based on the determined duration. The time offset may indicate a transmission start time when the transmission starts within the scheduling period. The first WTRU may send a scheduling assignment that includes a time offset parameter. The time offset parameter may indicate the transmission start time. The time offset parameter may be determined on a random basis. The time offset parameter may be determined based on an identifier, e.g., such as a group destination identification (ID). The first WTRU may send an indication of a number of transport blocks in the transmission.
    • 公开了应用灵活的D2D发现的系统,方法和工具。 第一无线发射/接收单元(WTRU)可以在调度周期内确定到第二WTRU的传输的持续时间。 第一WTRU可以基于所确定的持续时间来确定用于传输的时间偏移。 时间偏移可以指示在调度周期内传输开始的传输开始时间。 第一WTRU可以发送包括时间偏移参数的调度分配。 时间偏移参数可以指示传输开始时间。 可以随机地确定时间偏移参数。 时间偏移参数可以基于诸如组目的地标识(ID)的标识符来确定。 第一WTRU可以在传输中发送多个传输块的指示。
    • 3. 发明申请
    • OPTIMIZATIONS FOR RELAY COMMUNICATIONS
    • 优化继电器通讯
    • WO2016073984A2
    • 2016-05-12
    • PCT/US2015/059743
    • 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.
    • 描述了用于动态激活和去激活接近服务(ProSe)的WTRU到网络(NW)中继的程序。 描述了在远程WTRU和WTRU-NW中继之间建立链路的控制平面程序。 描述了执行从基础设施模式到中继模式和中继模式到基础设施模式的移动性的过程。 描述了执行会话连续性和IP地址保存的过程。 会话连续性的触发器被定义为由WTRU使用。 还描述了支持覆盖外WTRU的多播中继的方法,包括确定临时移动组标识(TMGI)。 还描述了在添加新的WTRU时,当WTRU离开组时,或者当网络中的会话被更新时,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。 还描述了支持系统信息块(SIB)转发的方法。
    • 7. 发明申请
    • GROUP COMMUNICATION SERVICE ENABLER (GCSE) GROUP MANAGEMENT
    • 集团通讯服务启动者(GCSE)集团管理
    • WO2015038438A1
    • 2015-03-19
    • PCT/US2014/054360
    • 2014-09-05
    • INTERDIGITAL PATENT HOLDINGS, INC.
    • AHMAD, SaadWANG, GuanzhouSUN, Li-HsiangWATFA, MahmoudADJAKPLE, Pascal
    • H04W4/02H04W4/08H04W8/18H04W76/02H04L29/08H04L29/06
    • H04W4/10H04L65/1073H04L65/4061H04L67/14H04W4/02H04W4/021H04W4/06H04W4/08H04W8/06H04W8/186H04W64/00H04W76/19
    • A communication method implemented on a 3rd Generation Partnership Project (3GPP) communication network includes providing an attachment between a group member of a communication group and a group application server, detecting a detachment between the group member and the group application server, and reestablishing the attachment by the 3GPP communication network. A Mobility Management Entity (MME) may provide the attachment. A Group Communication Service Enabler Application Server (GCSE AS) or a Multipoint Service (MuSe) functionality may detect the detachment. The attachment may be reestablished according to the MuSe functionality. A group communication bearer may have a first priority level for allocating resources to the group communication bearer, and a second priority level for allocating resources to the non-group communication bearer. The second priority level may be different from the first priority level. Different Quality Control Indexes (QCIs) may be provided to the group communication bearer and the non-group communication bearer.
    • 在第三代合作伙伴计划(3GPP)通信网络上实现的通信方法包括提供通信组的组成员和组应用服务器之间的附件,检测组成员和组应用服务器之间的分离,以及重新建立附件 由3GPP通信网络。 移动管理实体(MME)可以提供附件。 组通信服务启动器应用服务器(GCSE AS)或多点服务(MuSe)功能可以检测分离。 附件可以根据MuSe功能重新建立。 组通信承载可以具有用于向组通信承载分配资源的第一优先级级别和用于向非群组通信承载分配资源的第二优先级。 第二优先级可以与第一优先级不同。 可以向组通信承载和非群组通信承载提供不同的质量控制索引(QCI)。