WIRELESS RESOURCE ALLOCATION AND BUFFER STATUS REPORTING BASED ON PACKET SIZE
    53.
    发明申请
    WIRELESS RESOURCE ALLOCATION AND BUFFER STATUS REPORTING BASED ON PACKET SIZE 审中-公开
    基于分组大小的无线资源分配和缓冲状态报告

    公开(公告)号:US20160285775A1

    公开(公告)日:2016-09-29

    申请号:US15066935

    申请日:2016-03-10

    Abstract: Wireless resource allocation and buffer status reporting may be based on packet size, and a base station may allocate resources for communications with a user equipment (UE) to provide resources for an integer number of packets. For downlink communications from a base station to a UE, a scheduler may allocate resources to transmit an integer number of packets, based on packet size and a number of packets to be transmitted. For uplink communications, a UE may transmit a buffer status report (BSR) that indicates packet size and a number of packets to be transmitted. A base station may allocate uplink resources to the UE that correspond to an integer number of packets. Resources may be allocated that have a variable length transmission time interval (TTI) that may be adjusted, alone or in combination with other resources (e.g., frequency resources), to provide for transmission of an integer number of packets.

    Abstract translation: 无线资源分配和缓冲状态报告可以基于分组大小,并且基站可以分配用于与用户设备(UE)进行通信的资源,以为整数个分组提供资源。 对于从基站到UE的下行链路通信,调度器可以基于分组大小和要发送的分组的数量来分配资源以发送整数个分组。 对于上行链路通信,UE可以发送指示分组大小和要发送的分组数量的缓冲器状态报告(BSR)。 基站可以向对应于整数个分组的UE分配上行链路资源。 可以分配资源,其具有单独的或与其他资源(例如,频率资源)组合的可变长度传输时间间隔(TTI),以提供整数个分组的传输。

    Systems and methods for data exchange over common communication links
    54.
    发明授权
    Systems and methods for data exchange over common communication links 有权
    用于通过通用通信链路进行数据交换的系统和方法

    公开(公告)号:US09426718B2

    公开(公告)日:2016-08-23

    申请号:US13830193

    申请日:2013-03-14

    Abstract: Systems, methods, and devices for network communication of data are described. One method described includes determining a characteristic of data to be communicated. The method includes selecting, via a processor, one of a plurality of communication pathways based at least on the determined characteristic, wherein selecting is independent of an air interface used to communicate the data. The method further includes establishing the selected communication pathway if the selected pathway has not been established. The method further includes communicating the data via the selected communication pathway.

    Abstract translation: 描述了数据网络通信的系统,方法和设备。 所描述的一种方法包括确定要传送的数据的特性。 该方法包括至少基于确定的特性经由处理器选择多个通信路径中的一个,其中选择独立于用于传送数据的空中接口。 该方法还包括如果所选择的路径尚未建立,则建立所选择的通信路径。 该方法还包括经由所选择的通信路径传送数据。

    ENHANCED CONNECTION MANAGEMENT FOR MULTIPLE ACCESS NETWORKS
    55.
    发明申请
    ENHANCED CONNECTION MANAGEMENT FOR MULTIPLE ACCESS NETWORKS 有权
    多种接入网络的增强连接管理

    公开(公告)号:US20160135247A1

    公开(公告)日:2016-05-12

    申请号:US14935051

    申请日:2015-11-06

    Abstract: Semi-connected state operation for UEs in multiple-access networks is described. In the semi-connected state, UEs may monitor system information and paging, and mobility may be UE-controlled. Base stations may determine whether to transition UEs from the connected state to the semi-connected state based on capabilities, priority, data connections, or loading conditions. Base stations may maintain context information and logical traffic connections for UEs while UEs continue to be served by the base station in the semi-connected state. Thus, when a transition from the semi-connected state to the connected state occurs, the base station does not have to re-establish security parameters, nor re-establish logical traffic connections within the network for carrying control plane and user plane data for the UE. Context information for semi-connected state UEs may be shared between neighboring base stations or base stations within a context area. The techniques may be applied to LTE/LTE-A networks.

    Abstract translation: 描述了在多址网络中的UE的半连接状态操作。 在半连接状态下,UE可以监视系统信息和寻呼,移动性可以由UE控制。 基站可以基于能力,优先级,数据连接或加载条件来确定是否将UE从连接状态转换到半连接状态。 基站可以维护用于UE的上下文信息和逻辑业务连接,而UE在半连接状态下继续由基站服务。 因此,当从半连接状态到连接状态的转变发生时,基站不必重新建立安全参数,也不必在网络内重新建立用于承载控制平面和用户平面数据的逻辑业务连接 UE。 半连接状态UE的上下文信息可以在上下文区域内的相邻基站或基站之间共享。 这些技术可以应用于LTE / LTE-A网络。

    Broadcast/Multicast Used for M2M/MTC
    57.
    发明申请
    Broadcast/Multicast Used for M2M/MTC 审中-公开
    用于M2M / MTC的广播/组播

    公开(公告)号:US20150223028A1

    公开(公告)日:2015-08-06

    申请号:US14425304

    申请日:2012-10-03

    CPC classification number: H04W4/06 H04L12/189 H04W4/08 H04W4/70

    Abstract: A method, an apparatus, and a computer program product for wireless communication are provided. An apparatus notifies a user equipment (UE) of an upcoming multicast/broadcast of data intended for receipt by a group of UEs assigned a machine type communication (MTC) class. The UE has one or more MTC classes assigned to it and is configured to awake for the upcoming multicast/broadcast of data if the data to be broadcast corresponds to an MTC class assigned to the UE. The apparatus also multicasts/broadcasts the data intended for receipt by a group of UEs through at least one multicast/broadcast mechanism.

    Abstract translation: 提供了一种用于无线通信的方法,装置和计算机程序产品。 一种装置向用户设备(UE)通知即将到来的组播/广播数据,该数据旨在由分配有机器类型通信(MTC)类的一组UE接收。 UE具有分配给它的一个或多个MTC类,并且如果要广播的数据对应于分配给UE的MTC类别,则被配置为唤醒即将到来的数据的多播/广播。 该装置还通过至少一个多播/广播机制来组播/广播一组UE要接收的数据。

    Differentiated VoLTE Based on Dual Radio and DRVCC
    58.
    发明申请
    Differentiated VoLTE Based on Dual Radio and DRVCC 有权
    基于双无线电和DRVCC的差分VoLTE

    公开(公告)号:US20150131619A1

    公开(公告)日:2015-05-14

    申请号:US14502542

    申请日:2014-09-30

    CPC classification number: H04W36/0022 H04W36/0027 H04W36/30 H04W88/06

    Abstract: Various embodiments provide methods and apparatus for network-controlled DRVCC. In an embodiment method, a wireless user equipment may include requesting handover of a voice over Internet protocol (VoIP) call from a first network to a second network, activating a second radio, continuing the voice call on the circuit switched (CS) domain of the second network, and communicating data for applications other than the voice call via the first network. An embodiment method may include determining whether the first network supports voice-over-LTE (VoLTE) calls, and deactivating a radio in response to determining that the first network supports VoLTE calls. An embodiment method may include determining whether a quality of the VoIP call satisfies a quality threshold, deactivating the radio continued to the second network when the quality of the VoIP call satisfies the quality threshold, and activating the second radio when the VoIP call quality does not satisfy the quality threshold.

    Abstract translation: 各种实施例提供了用于网络控制的DRVCC的方法和装置。 在一个实施方式中,无线用户设备可以包括请求通过因特网协议(VoIP)呼叫的语音从第一网络到第二网络的切换,激活第二无线电,继续在电路交换(CS)域上的语音呼叫 第二网络,以及经由第一网络为不同于语音呼叫的应用传送数据。 实施例方法可以包括确定第一网络是否支持LTE语音(VoLTE)呼叫,以及响应于确定第一网络支持VoLTE呼叫来停用无线电。 一种实施方式可以包括确定VoIP呼叫的质量是否满足质量阈值,当VoIP呼叫的质量满足质量阈值时停用继续到第二网络的无线电,以及当VoIP呼叫质量不满足时激活第二无线电 满足质量门槛。

    EMERGENCY ALERT USING MBMS AND CELL BROADCASTING
    60.
    发明申请
    EMERGENCY ALERT USING MBMS AND CELL BROADCASTING 审中-公开
    使用MBMS和细胞广播的紧急警报

    公开(公告)号:US20140134970A1

    公开(公告)日:2014-05-15

    申请号:US14075916

    申请日:2013-11-08

    Abstract: An emergency notification service is described that is delivered using an evolved multimedia broadcast-multicast service (eMBMS). An emergency notification is sent out to user equipment (UE) in affected areas. In response to receiving the emergency notification, the UE searches the appropriate emergency multicast service acquisition information for multiple potential types of available emergency content that is provided by the eMBMS system in the network and tunes to the eMBMS to receive the emergency content. In selected aspects, the transmitted information, including the notifications and content may be scrambled using the same cell ID for each of the cells transmitting the same content. This improves the quality of the transmitted signals allowing for more reliable receipt and decoding by the receiving UEs.

    Abstract translation: 描述了使用演进的多媒体广播多播服务(eMBMS)传送的紧急通知服务。 向受影响地区的用户设备(UE)发送紧急通知。 响应于接收紧急通知,UE针对网络中eMBMS系统提供的多种潜在类型的可用紧急内容搜索适当的紧急组播业务获取信息,并调谐到eMBMS以接收紧急内容。 在选择的方面,包括通知和内容的发送信息可以使用与发送相同内容的每个小区相同的小区ID加扰。 这提高了发送信号的质量,从而允许接收UE进行更可靠的接收和解码。

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