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    • 41. 发明申请
    • LOAD AWARE DYNAMIC RANDOM ACCESS CHANNEL (RACH) DESIGN
    • 负载感知动态随机访问通道(RACH)设计
    • WO2017204783A1
    • 2017-11-30
    • PCT/US2016/033871
    • 2016-05-24
    • INTEL CORPORATION
    • SINGH, SarabjotARYAFAR, EhsanLEE, Wook BongHIMAYAT, NageenZHU, JingYEH, Shu-Ping
    • H04W74/08H04W74/00
    • H04W74/0833H04W74/006
    • An apparatus for use in an eNodeB of a cellular network, that facilitates dynamic random access channel (RACH) design, comprising a processing circuit that, upon execution of instructions from a memory circuit, is configured to determine channel parameters for a RACH phase of a random access channel that exists between the eNodeB and one or more user equipments (UEs) in a coverage area of the eNodeB, based on a load information of the eNodeB. In some embodiments, the channel parameters comprise information on one or more sequential random access windows (RAWs) within the RACH phase. Further, the processing circuit is configured to generate a system information message comprising the channel parameters for downlink transmission to the one or more UEs.
    • 用于促进动态随机接入信道(RACH)设计的蜂窝网络的eNodeB中使用的装置包括处理电路,该处理电路在执行来自存储器电路的指令时被配置为确定 基于eNodeB的负载信息,存在于eNodeB与eNodeB的覆盖区域中的一个或多个用户设备(UE)之间的随机接入信道的RACH阶段的信道参数。 在一些实施例中,信道参数包括关于RACH阶段内的一个或多个顺序随机接入窗口(RAW)的信息。 此外,处理电路被配置为生成包括用于到一个或多个UE的下行链路传输的信道参数的系统信息消息。
    • 43. 发明申请
    • GENERIC MULTI-ACCESS PROTOCOLS FOR NEXT GENERATION MULTI-ACCESS NETWORKS
    • 用于新一代多址网络的通用多址接入协议
    • WO2017189176A2
    • 2017-11-02
    • PCT/US2017/025612
    • 2017-03-31
    • INTEL CORPORATION
    • ZHU, JingHIMAYAT, NageenZHANG, Nana
    • H04W76/15H04W76/22
    • Technology for a User Equipment (UE) operable to support a client connection manager (CCM) to communicate over a generic multi-access (GMA) control plane protocol, and to support a client Multi-Access Data Proxy (C-MADP) to communicate over a generic multi-access (GMA) user plane protocol is disclosed. The UE can decode an initial (INIT) request (REQ) message received from a network connection manager (NCM) for capability exchange & initial configurations. The UE can encode, for transmission to the NCM, an INIT response (RSP) message. The UE can encode, for transmission to the NCM, a reconfiguration request (REQ) message, wherein the reconfiguration message includes a connection identification (ID) to identify a connection for reconfiguration; and a reconfiguration action to indicate which reconfiguration action to request one or more of a setup or a release of a secondary connection.
    • 用于用户设备(UE)的技术可用于支持客户端连接管理器(CCM)通过通用多址(GMA)控制平面协议进行通信,并支持客户端多路访问数据 代理(C-MADP)通过通用多路访问(GMA)用户平面协议进行通信。 UE可以解码从网络连接管理器(NCM)接收的初始(INIT)请求(REQ)消息以进行能力交换& 初始配置。 为了传输到NCM,UE可以编码INIT响应(RSP)消息。 为了传输到NCM,UE可以编码重新配置请求(REQ)消息,其中重新配置消息包括连接标识(ID)以标识用于重新配置的连接; 以及重新配置动作以指示哪个重新配置动作来请求一个或多个次要连接的建立或释放。
    • 44. 发明申请
    • MAXIMUM TRANSMISSION UNIT (MTU) SIZE RECONFIGURATION FOR AN LWIP OPERATION
    • 最大传输单元(MTU)大小重新配置LWIP操作
    • WO2017142575A1
    • 2017-08-24
    • PCT/US2016/033222
    • 2016-05-19
    • INTEL CORPORATION
    • ZHU, JingSRINIVASAN, Suresh
    • H04W28/18H04W28/06H04L29/06
    • H04W28/06H04L63/0272H04L63/164H04W12/02
    • Technology for an eNodeB to communicate with a user equipment (UE) reconfiguring a maximum transmission unit (MTU) size for 3GPP LTE WLAN Radio Level Integration with IPsec Tunnel (LWIP) operation within a wireless communication network is disclosed. The eNodeB can determine an encapsulation type for payload data communicated during a wireless local area network (WLAN) radio level integration with IPsec tunnel (LWIP) operation. The eNodeB can set an LWIP maximum transmission unit (MTU) size based on the encapsulation type. The eNodeB can signal a transceiver of the eNodeB to transmit one or more LWIP parameters to the UE to enable the UE to set a size of an MTU based on the size of the LWIP MTU.
    • 用于eNodeB与用户设备(UE)进行通信的技术用于在无线通信网络内重新配置用于3GPP LTE WLAN无线电层级与IPsec隧道(LWIP)操作的集成的最大传输单元(MTU)大小是 披露。 eNodeB可以确定在与IPsec隧道(LWIP)操作的无线局域网(WLAN)无线电级集成期间传送的有效载荷数据的封装类型。 eNodeB可以根据封装类型设置LWIP最大传输单元(MTU)大小。 eNodeB可以用信号通知eNodeB的收发器向UE发送一个或多个LWIP参数,以使得UE能够基于LWIP MTU的大小来设置MTU的大小。
    • 47. 发明申请
    • RESOURCE MANAGEMENT IN MULTIPLE RADIO ACCESS NETWORKS
    • 多个无线电接入网络的资源管理
    • WO2015023250A1
    • 2015-02-19
    • PCT/US2013/054542
    • 2013-08-12
    • INTEL CORPORATIONZHU, Jing
    • ZHU, Jing
    • H04W28/10H04W28/16
    • H04W28/0268H04L47/125H04L47/30H04W28/08H04W28/16
    • Embodiments of the present disclosure describe techniques and configurations for resource management associated with communications in multiple radio access networks. In one example, a method of resource management may include obtaining quality of experience (QoE) information from a network server running deep packet inspection or an application executing on a computing device and configured to provide content to the computing device for user access, and determining whether to adjust the content delivery via at least one of the two radio access networks, based at least in part on the quality experience information. The adjustment may include increasing or reducing the content delivery via one of the radio access networks. The content may be delivered to the computing device via at least two radio access networks substantially simultaneously. Other embodiments may be described and/or claimed.
    • 本公开的实施例描述了与多个无线电接入网络中的通信相关联的资源管理的技术和配置。 在一个示例中,资源管理的方法可以包括从运行深度分组检查的网络服务器或在计算设备上执行的应用程序获得体验质量(QoE)信息,并且被配置为向计算设备提供用于用户访问的内容,以及确定 是否至少部分地基于质量体验信息来调整通过两个无线电接入网络中的至少一个的内容传送。 调整可以包括通过无线电接入网络之一增加或减少内容传送。 内容可以通过至少两个无线电接入网络基本上同时传送到计算设备。 可以描述和/或要求保护其他实施例。