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    • 3. 发明申请
    • METHOD AND APPARATUS FOR SUPPORTING MACHINE-TO-MACHINE CACHING AT A SERVICE CAPABILITY LAYER
    • 在服务能力层支持机器到机器的方法和装置
    • WO2013142139A3
    • 2014-04-24
    • PCT/US2013030380
    • 2013-03-12
    • INTERDIGITAL PATENT HOLDINGS
    • DONG LIJUNSEED DALE NWANG CHONGGANGSTARSINIC MICHAEL FLU GANGRUSSELL PAUL L JR
    • H04W4/00H04W88/16
    • H04W4/005H04L67/02H04L67/2842H04W72/02H04W72/048H04W88/16
    • A method and apparatus for supporting machine-to-machine (M2M) caching at a service capability layer are disclosed. A service capability layer of an M2M entity provides functions that are shared by the M2M applications and expose functionalities to the M2M applications through a set of open interfaces. The service capability layer may be configured to cache resources in a resource structure of the service capability layer. The service capability layer caching can provide complete cached resource discovery, and provide more intelligent and robust security mechanism to authenticate the clients, and subscription to the cached resource becomes flexible and feasible. M2M service may be virtualized in a cloud. An M2M cache manager may maintain a record of resources cached in a plurality of M2M servers and coordinate the M2M servers in caching the resources. The M2M cache manager may provide mapping between a virtualized cached resource and a real cached resource.
    • 公开了一种用于在服务能力层上支持机器对机器(M2M)高速缓存的方法和装置。 M2M实体的服务能力层提供由M2M应用共享的功能,并且通过一组开放接口将功能暴露给M2M应用。 服务能力层可以被配置为在服务能力层的资源结构中缓存资源。 服务能力层缓存可以提供完整的缓存资源发现,并提供更智能,更强大的安全机制来认证客户端,对缓存资源的订阅变得灵活可行。 M2M服务可以在云中虚拟化。 M2M缓存管理器可以维护在多个M2M服务器中缓存的资源的记录,并且在缓存资源时协调M2M服务器。 M2M高速缓存管理器可以提供虚拟缓存资源和真实缓存资源之间的映射。
    • 4. 发明申请
    • METHOD AND APPARATUS FOR CONTEXT-AWARE SYNCHRONIZATION FOR PEER-TO-PEER COMMUNICATION
    • 用于对等通信同步的方法和装置用于对等通信的方法和装置
    • WO2014151589A3
    • 2014-12-18
    • PCT/US2014026048
    • 2014-03-13
    • INTERDIGITAL PATENT HOLDINGS
    • DING ZONGRUILI HONGKUNLI QINGWANG CHONGGANGRUSSELL PAUL L JR
    • H04W84/18
    • H04W56/0025H04L67/104H04W84/18
    • Apparatuses, computer readable media, and methods are disclosed for context aware synchronization for peer-to-peer communication. A method may include extracting from a super beacon synchronization information. The method may further include synchronizing with a beacon of an application based on the synchronization information. Another method may include extracting synchronization information from a received beacon, if the received beacon is for a first application. The method may further include if the received beacon is not for a first application, then extracting common beacon synchronization information from the received beacon, scanning for the common beacon based on the extracted common beacon synchronization information, receiving the common beacon, and extracting common channel synchronization information from the common beacon. Another method may include transmitting synchronization information in a data packet to a WTRU, if there is data to be transmitted, and otherwise transmitting synchronization information in a dummy packet to the second WTRU.
    • 公开了用于对等通信的情境感知同步的设备,计算机可读介质和方法。 一种方法可以包括从超级信标同步信息中提取。 该方法可以进一步包括基于同步信息与应用程序的信标同步。 另一种方法可以包括:如果所接收的信标用于第一应用,则从所接收的信标中提取同步信息。 该方法还可以包括:如果所接收的信标不是用于第一应用,则从所接收的信标中提取公共信标同步信息,基于提取的公共信标同步信息扫描公共信标,接收公共信标,并且提取公共信道 来自公共信标的同步信息。 另一种方法可以包括:如果存在要发送的数据,则将数据分组中的同步信息发送到WTRU,否则将虚拟分组中的同步信息发送到第二WTRU。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR SUPPORTING MACHINE-TO-MACHINE COMMUNICATIONS
    • 用于支持机器到机器通信的方法和设备
    • WO2013106188A3
    • 2013-09-12
    • PCT/US2012071028
    • 2012-12-20
    • INTERDIGITAL PATENT HOLDINGS
    • WANG CHONGGANGLU GUANGKUMAR ROHITSTARSINIC MICHAEL FSEED DALE NDONG LIJUNLY QUANGFLYNN IV WILLIAM RPODIAS NICHOLAS JLI QINGRUSSELL JR PAUL L
    • H04W4/00
    • H04W4/005H04W60/00H04W88/16
    • A method and apparatus for distributed services and data in a machine-to-machine (M2M) communication network are disclosed. A network server, an M2M gateway, and M2M devices include an M2M service capability layer for supporting M2M service capabilities, respectively. Reference points may be defined for interactions between network service capability layers, between gateway service capability layers, between a gateway service capability layer and a device service capability layer of an M2M device, between M2M device applications, and/or between a network, gateway, or device service capability layer and an M2M application. The network server may be split into a control server and a data server at a service capability layer to provide service capabilities for control functions and service capabilities for data functions, respectively. The data server may be configured to interact with another data server to push or pull data or resources either directly or indirectly via the control server.
    • 公开了一种用于机器对机器(M2M)通信网络中的分布式服务和数据的方法和设备。 网络服务器,M2M网关和M2M设备分别包括用于支持M2M服务能力的M2M服务能力层。 参考点可以针对网络服务能力层之间,网关服务能力层之间,M2M设备的网关服务能力层和设备服务能力层之间,M2M设备应用之间和/或网络,网关, 或设备服务能力层和M2M应用。 网络服务器可以分成服务能力层的控制服务器和数据服务器,分别为数据功能的控制功能和服务能力提供服务能力。 数据服务器可以被配置为与另一个数据服务器交互以通过控制服务器直接或间接推送或拉取数据或资源。
    • 6. 发明申请
    • CHANNEL MANAGEMENT FOR PEER-TO-PEER COMMUNICATIONS
    • 通信管理与对等通信
    • WO2014074719A3
    • 2014-07-03
    • PCT/US2013068955
    • 2013-11-07
    • INTERDIGITAL PATENT HOLDINGS
    • LI QINGWANG CHONGGANGDING ZONGRUIRUSSELL PAUL L JRLI HONGKUN
    • H04L29/08H04W72/04H04W74/00
    • H04L67/1093H04L67/1051H04L67/1089H04L67/1091H04W72/044H04W74/00
    • Control of inter-peer-to-peer networks (inter-P2PNWs) and intra-P2PNW control may include virtually centralized, and distributed control approaches. A peer may be assigned as a super virtual leader (SuperVL) for communicating control and/or data information between P2PNWs by communicating with at least one peer in each of the P2PNWs, and such communication may be done over a Common Control and Data Channel (CCDCH) that is common to all of the P2PNWs. The CCDCH may be transmitted at the beginning of a superframe. Peers may be assigned as virtual leaders (VLs) or sub-virtual leaders (SubVLs) within the P2PNWs, and a Dedicated Control and Data Channel (DCDCH) may be used for control within each corresponding P2PNW. Fast accessing of CCDCH and DCDCH techniques may be used, as well techniques for inter-P2PNWs and intra-P2PNW channel allocation (CA) and channel accessing (CAc).
    • 对等网络(P2PNW)和P2PNW控制的控制可能包括实际上集中式和分布式控制方式。 可以将对等体指定为超级虚拟领导(SuperVL),用于通过与每个P2PNW中的至少一个对等体通信来在P2PNW之间传送控制和/或数据信息,并且可以通过公共控制和数据信道( CCDCH),这是所有P2PNW的共同之处。 CCDCH可以在超帧的开头传输。 对等体可以被分配为P2PNW内的虚拟领导(VL)或子虚拟领导(SubVL),并且专用控制和数据信道(DCDCH)可以用于在每个对应的P2PNW内进行控制。 可以使用CCDCH和DCDCH技术的快速访问,以及P2PNW和P2PNW信道分配(CA)和信道访问(CAc)之间的技术。