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    • 25. 发明申请
    • SYSTEM AND METHODS FOR ACHIEVING END-TO-END SECURITY FOR HOP-BY-HOP SERVICES
    • 用于实现逐客户服务的端对端安全的系统和方法
    • WO2017075410A1
    • 2017-05-04
    • PCT/US2016/059403
    • 2016-10-28
    • CONVIDA WIRELESS, LLC
    • SHAH, Yogendra, C.CHOYI, Vinod, KumarSEED, Dale, N.STARSINIC, Michael, F.FLYNN, William, Robert, IVCHEN, Zhuo
    • H04L29/06
    • H04L63/105H04L63/20
    • An IoT E2E Service Layer Security Management system supports methods/procedures to allow an application to establish, use, and teardown an IoT SL communication session that has application specified E2E security preferences and that targets one or more SL addressable targets (e.g. an IoT application, device, or gateway SL addressable resource). E2E SL Session based methods/procedures achieve a required overall E2E security level, by allowing IoT SL instances to influence and coordinate hop security for a multi-hop communication path spanning across multiple intermediary nodes. Methods/procedures reduce overhead, simplify and obviate the need for E2E service level nodes (initiation/termination nodes) from having to perform security service negotiation, in order to establish secure hop-by -hop security associations aligned with an E2E security requirement.
    • 物联网E2E服务层安全管理系统支持允许应用程序建立,使用和拆除物联网SL通信会话的方法/程序,该通信会话具有应用指定的E2E安全偏好,并且以一个或多个SL 可寻址目标(例如物联网应用程序,设备或网关SL可寻址资源)。 E2E SL基于会话的方法/过程通过允许IoT SL实例影响和协调跨越多个中间节点的多跳通信路径的跳安全性来实现所需的整体E2E安全级别。 方法/过程减少了开销,简化并且不需要E2E服务级别节点(发起/终止节点)必须执行安全服务协商,以建立与E2E安全需求一致的安全逐跳安全关联。 / p>
    • 26. 发明申请
    • MOBILE CORE NETWORK SERVICE EXPOSURE FOR THE USER EQUIPMENT
    • 用户设备的移动核心网络服务接触
    • WO2017024005A1
    • 2017-02-09
    • PCT/US2016/045297
    • 2016-08-03
    • CONVIDA WIRELESS, LLC
    • STARSINIC, Michael, F.MOHAMED, AhmedLI, QingDI GIROLAMO, RoccoWANG, Chonggang
    • H04W4/00
    • H04W4/70
    • A Service Capability Exposure Function can be added to the UE (U-SCEF). The U-SCEF may be part of the UE's operating system (OS) and expose API's to applications that allow these applications to schedule data plane communications such as periodic sensor measurements or a firmware download. The U-SCEF communicates with an EPC Interworking Service that resides in the mobile network operator's (S)Gi-LAN. The EPC Interworking Service serves as an interface between the U-SCEF and the service capabilities that are exposed by the MNO via the SCEF. The U-SCEF may provide the EPC Interworking Service with information about the UE's anticipated communication schedule and mobility status. The EPC Interworking Service uses the services that are exposed by the SCEF to determine the optimal times for the UE to communicate, an optimal mobility management configuration, etc. The EPC Interworking Service negotiates a communication schedule with the EPC (SCEF) on behalf of the UE (U-SCEF) and provide the U-SCEF with a communication policy or mobility management policy to match the needs of the UE and the mobile network.
    • 服务能力曝光功能可以添加到UE(U-SCEF)。 U-SCEF可以是UE操作系统(OS)的一部分,并将API暴露给允许这些应用程序调度数据平面通信的应用程序,例如周期性传感器测量或固件下载。 U-SCEF与驻留在移动网络运营商(S)Gi-LAN中的EPC互通服务进行通信。 EPC互通服务作为U-SCEF与MNO通过SCEF公开的服务能力之间的接口。 U-SCEF可以向EPC互通服务提供关于UE预期通信时间表和移动性状态的信息。 EPC互通服务使用由SCEF公开的服务来确定UE进行通信的最佳时间,最佳移动性管理配置等。EPC互通服务代表EPC(SCEF)与EPC(SCEF)协商通信计划 UE(U-SCEF),并向U-SCEF提供与UE和移动网络的需要相匹配的通信策略或移动性管理策略。
    • 30. 发明申请
    • NETWORK-INITIATED HANDOVER IN INTEGRATED SMALL CELL AND WIFI NETWORKS
    • 一体化小型网络和无线网络中的网络启动切换
    • WO2016011011A1
    • 2016-01-21
    • PCT/US2015/040355
    • 2015-07-14
    • CONVIDA WIRELESS, LLC
    • MOHAMED, AhmedTOMICI, John, L.LI, QingSTARSINIC, Michael, F.
    • H04W36/00H04W36/14H04W84/04H04W88/16H04W84/12H04W92/06
    • H04W36/0022H04W36/0011H04W36/14H04W36/18H04W36/385H04W84/045H04W84/12H04W88/16H04W92/06
    • Applicants disclose an inter-system mobility anchor control point that is adapted to initiate handover of an existing communication connection in an integrated small cell and WiFi (ISW) network. The inter-system mobility anchor control point is communicatively coupled to both an HeNB/LTE network and trusted WLAN access network (TWAN) and adapted to operate as a common control plane entity for both HeNB/LTE and TWAN access. The mobility anchor control point may be, for example, a mobility management entity (MME) or an integrated small cell and WLAN gateway (ISW GW). The mobility anchor control point is adapted to request and receive measurement data relating to the operations of the HeNB network and WLAN. Based upon the measurement data, the mobility anchor control point determines whether an existing communication path via one of the HeNB/LTE network and WLAN should be handed over to the other of the networks. Upon determining a handover should be made, the mobility anchor control point coordinates the handover.
    • 申请人公开了一种系统间移动锚点控制点,其适于发起集成小小区和WiFi(ISW)网络中的现有通信连接的切换。 系统间移动性锚点控制点通信耦合到HeNB / LTE网络和可信WLAN接入网络(TWAN),并适于作为用于HeNB / LTE和TWAN接入的公共控制平面实体。 移动锚点控制点可以是例如移动性管理实体(MME)或集成小小区和WLAN网关(ISW GW)。 移动锚控点适于请求和接收与HeNB网络和WLAN的操作有关的测量数据。 基于测量数据,移动锚点控制点确定是否应当将通过HeNB / LTE网络和WLAN中的一个的现有通信路径切换到另一个网络。 在确定应进行切换时,移动锚点控制点协调切换。