Carrier aggregation capable mobile operation over single frequency
    533.
    发明授权
    Carrier aggregation capable mobile operation over single frequency 有权
    能够在单频上移动运营的载波聚合

    公开(公告)号:US09351205B2

    公开(公告)日:2016-05-24

    申请号:US13831550

    申请日:2013-03-14

    Abstract: A method, an apparatus, and a computer program product for wireless communication are provided. The apparatus communicates with a primary serving cell via a first radio, detects a presence of a target cell, sends a first message to the primary serving cell indicating the detected presence of the target cell, receives a command from the primary serving cell to add the target cell as a secondary serving cell, and communicates with at least one of the primary serving cell or the target cell via a second radio to facilitate a handover to the target cell. The first radio and the second radio operate on a same frequency. A downlink control channel of the primary serving cell is not used to schedule a target cell downlink transmission. An uplink control channel to the primary serving cell is not used to provide an acknowledgment of the target cell downlink transmission. The uplink control channel to the primary serving cell is not used to provide channel side information for the target cell downlink transmission.

    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。 设备经由第一无线电与主服务小区进行通信,检测目标小区的存在,向主服务小区发送指示检测到目标小区的存在的第一消息,从主服务小区接收命令以添加 目标小区作为辅助服务小区,并且经由第二无线电与主服务小区或目标小区中的至少一个进行通信,以便于切换到目标小区。 第一个无线电和第二个无线电在相同的频率下工作。 主服务小区的下行链路控制信道不用于调度目标小区下行链路传输。 到主服务小区的上行链路控制信道不用于提供目标小区下行链路传输的确认。 到主服务小区的上行链路控制信道不用于为目标小区下行链路传输提供信道侧信息。

    SELECTED IP FLOW ULTRA LOW LATENCY
    534.
    发明申请
    SELECTED IP FLOW ULTRA LOW LATENCY 审中-公开
    选择IP流量超低功耗

    公开(公告)号:US20160135072A1

    公开(公告)日:2016-05-12

    申请号:US14937017

    申请日:2015-11-10

    Abstract: Methods, systems, and devices are described for decreasing user plane latency in a wireless communication system. This may include routing a portion of bearer traffic to or from a UE through a local or serving gateway, or within or between base stations, rather than via the core network. In some examples, techniques for selected internet protocol flow ultra-low latency (SIPFULL) for systems in which users may have subscribed to enhanced services may be employed. The network may, for instance, authorize SIPFULL functionalities for UEs per access point name (APN) based on individual services subscribed by the UE to improve overall quality of service (QoS). In some examples, a UEs latency requirements or SIPFULL authorizations may affect mobility operations.

    Abstract translation: 描述了用于在无线通信系统中减少用户平面延迟的方法,系统和设备。 这可以包括通过本地或服务网关,或在基站之间或基站之间,而不是经由核心网络将承载业务的一部分路由到UE或从UE路由到UE。 在一些示例中,可以采用用于选择的因特网协议流的用于可能已经订阅了增强业务的系统的超低延迟(SIPFULL)的技术。 例如,网络可以基于基于UE订阅的各个服务来提高整体服务质量(QoS)来为每个接入点名称(APN)的UE授权SIPFULL功能。 在一些示例中,UE等待时间要求或SIPFULL授权可能影响移动性操作。

    TRANSMISSION PREEMPTION FOR ENHANCED COMPONENT CARRIERS
    535.
    发明申请
    TRANSMISSION PREEMPTION FOR ENHANCED COMPONENT CARRIERS 审中-公开
    增强组件运输的传输预警

    公开(公告)号:US20160113008A1

    公开(公告)日:2016-04-21

    申请号:US14861693

    申请日:2015-09-22

    Abstract: Techniques are described for preempting resource allocations to one or more UEs in the event that delay sensitive data is received. A resource allocation of a number of symbols may be granted to a first user equipment (UE) for first associated data to be transmitted. Subsequently, data may be received for a second UE that is more delay sensitive than the first data. The resource allocation to the first UE may be preempted, and resources allocated to the second UE for the second data within a variable length transmission time interval (TTI) of the resource allocation to the first UE. UEs may monitor for preemption during transmissions to other UEs in order to receive new resource grants associated with the preempted resource grant. Whether a UE monitors transmissions for preemption may be determined based on a quality or service (QoS) of the UE.

    Abstract translation: 描述了在接收到延迟敏感数据的情况下,抢占资源分配给一个或多个UE的技术。 可以向第一用户设备(UE)授予多个符号的资源分配用于要发送的第一相关联的数据。 随后,对于比第一数据更具延迟敏感性的第二UE可以接收数据。 在向第一UE的资源分配的可变长度传输时间间隔(TTI)内,对第一UE的资源分配可以被抢占,并且分配给第二UE的资源用于第二数据。 为了接收与被抢占的资源授权相关联的新的资源许可,UE可以监视在向其他UE的传输期间的抢占。 可以基于UE的质量或服务(QoS)来确定UE是否监视用于抢占的传输。

    TECHNIQUES FOR CELL-SPECIFIC REFERENCE SIGNAL (CRS)-BASED SIGNALING IN A SHARED RADIO FREQUENCY SPECTRUM BAND
    536.
    发明申请
    TECHNIQUES FOR CELL-SPECIFIC REFERENCE SIGNAL (CRS)-BASED SIGNALING IN A SHARED RADIO FREQUENCY SPECTRUM BAND 审中-公开
    用于分布式无线电频谱带中的细胞特异性参考信号(CRS) - 信号的技术

    公开(公告)号:US20160112169A1

    公开(公告)日:2016-04-21

    申请号:US14864056

    申请日:2015-09-24

    Abstract: Techniques are described for wireless communication. A first method includes identifying a configuration of a downlink subframe in a shared radio frequency spectrum band, and generating, based at least in part on the configuration of the downlink subframe, a cell-specific reference signal (CRS) for the downlink subframe. A second method includes dynamically determining a presence of a CRS in a downlink subframe in a shared radio frequency spectrum band, and performing at least one operation during the downlink subframe in response to the dynamic determination.

    Abstract translation: 技术描述为无线通信。 第一方法包括识别共享射频频带中的下行链路子帧的配置,并且至少部分地基于下行链路子帧的配置来生成用于下行链路子帧的小区特定参考信号(CRS)。 第二种方法包括动态地确定共享射频频带中的下行链路子帧中的CRS的存在,以及响应于动态确定在下行链路子帧期间执行至少一个操作。

    TECHNIQUES FOR TRANSMITTING AND RECEIVING PAGING MESSAGES OVER AN UNLICENSED RADIO FREQUENCY SPECTRUM BAND
    537.
    发明申请
    TECHNIQUES FOR TRANSMITTING AND RECEIVING PAGING MESSAGES OVER AN UNLICENSED RADIO FREQUENCY SPECTRUM BAND 有权
    发送和接收未经许可的无线电频谱带的寻呼信息的技术

    公开(公告)号:US20160057731A1

    公开(公告)日:2016-02-25

    申请号:US14818794

    申请日:2015-08-05

    Abstract: Techniques are described for wireless communication. A first method includes receiving a transmission including a paging group indicator and an indication of a time window. The transmission may be received at a user equipment (UE) over an unlicensed radio frequency spectrum band. The first method may also include monitoring, based on the paging group indicator, the unlicensed radio frequency spectrum band during the time window to receive an asynchronous paging message from a base station. A second method includes transmitting the transmission over the unlicensed radio frequency spectrum band; performing a number of clear channel assessments (CCAs) on the unlicensed radio frequency spectrum band during the time window; and transmitting the paging message over the unlicensed radio frequency spectrum band at a transmission time during the time window. The transmission time may be based on a result of at least one of the CCAs.

    Abstract translation: 技术描述为无线通信。 第一种方法包括接收包括寻呼组指示符和时间窗口指示的传输。 传输可以在用户设备(UE)上通过未许可的射频频带接收。 第一种方法还可以包括基于寻呼组指示器在从基站接收异步寻呼消息的时间窗口期间监视未经许可的射频频带。 第二种方法包括:通过未经许可的射频频带传输; 在时间窗口内对未经许可的无线电频谱频段执行一些清晰的频道评估(CCAs); 以及在所述时间窗口期间的发送时间,通过所述未许可射频频带发送所述寻呼消息。 传输时间可以基于至少一个CCA的结果。

    TECHNIQUES FOR CONFIGURING UPLINK CHANNEL TRANSMISSIONS USING SHARED RADIO FREQUENCY SPECTRUM BAND
    538.
    发明申请
    TECHNIQUES FOR CONFIGURING UPLINK CHANNEL TRANSMISSIONS USING SHARED RADIO FREQUENCY SPECTRUM BAND 有权
    使用共享无线电频谱配置上行链路信道传输的技术

    公开(公告)号:US20160037352A1

    公开(公告)日:2016-02-04

    申请号:US14807024

    申请日:2015-07-23

    Abstract: Techniques for wireless communications over a shared radio frequency spectrum band, may include techniques for transmitting uplink data transmissions using allocated uplink resources. Allocated uplink resources may include an uplink channel comprising a number of allocated interlaces of resource blocks (RBs) for use by a user equipment (UE). An incoming data stream may be processed and data separated into each of the allocated interlaces of RBs for the UE. Such separation may be through demultiplexing the data stream to obtain data for the allocated interlaces of RBs. The demultiplexed data may be mapped onto associated resource elements associated with the allocated interlaces of RBs, and transmitted. Different types of uplink channels, such as a physical uplink control channel (PUCCH), physical uplink shared channel (PUSCH) and/or a physical random access channel (PRACH) may be allocated to interlaces of RBs in one or more subframes of a transmitted radio frame.

    Abstract translation: 用于通过共享射频频带的无线通信的技术可以包括使用所分配的上行链路资源来发送上行链路数据传输的技术。 分配的上行链路资源可以包括由用户设备(UE)使用的资源块(RB)的分配数量的多个的上行链路信道。 可以处理输入数据流并将数据分离成每个被分配的用于UE的RB的交织。 这种分离可以通过解复用数据流来获得所分配的RB的交织的数据。 解复用的数据可以被映射到与所分配的RB的交织相关联的相关联的资源元素上,并被发送。 不同类型的上行链路信道,例如物理上行链路控制信道(PUCCH),物理上行链路共享信道(PUSCH)和/或物理随机接入信道(PRACH)可以被分配给所传输的一个或多个子帧中的交织 无线电框架。

    TRANSMISSION AND RECEPTION OF DISCOVERY SIGNALS OVER A RADIO FREQUENCY SPECTRUM BAND
    539.
    发明申请
    TRANSMISSION AND RECEPTION OF DISCOVERY SIGNALS OVER A RADIO FREQUENCY SPECTRUM BAND 有权
    发射和接收无线电频谱带发现信号

    公开(公告)号:US20160036617A1

    公开(公告)日:2016-02-04

    申请号:US14813474

    申请日:2015-07-30

    Abstract: Techniques are described for wireless communication. A first method includes receiving a first orthogonal frequency division multiplexing (OFDM) symbol including a plurality of reference signals (RSs) over a radio frequency spectrum band. The first method may also include receiving a second OFDM symbol including a first synchronization signal over the radio frequency spectrum band. A second method includes transmitting a first OFDM symbol including a plurality of RSs over an radio frequency spectrum band. The second method may also include transmitting a second OFDM symbol including a first synchronization signal over the radio frequency spectrum band. In each method, a first portion of the first OFDM symbol includes a higher density of the RSs than a remaining portion of the first OFDM symbol, and when included, the second OFDM symbol may be adjacent in time to the first OFDM symbol.

    Abstract translation: 技术描述为无线通信。 第一种方法包括:在无线电频谱带上接收包括多个参考信号(RS)的第一正交频分复用(OFDM)符号。 第一种方法还可以包括在射频频带上接收包括第一同步信号的第二OFDM符号。 第二种方法包括在射频频带上发送包括多个RS的第一OFDM符号。 第二种方法还可以包括通过射频频带发送包括第一同步信号的第二OFDM符号。 在每种方法中,第一OFDM符号的第一部分包括比第一OFDM符号的剩余部分更高的RS密度,并且当包括时,第二OFDM符号可以在时间上与第一OFDM符号相邻。

    TRANSMISSION OF UPLINK CONTROL CHANNELS OVER AN UNLICENSED RADIO FREQUENCY SPECTRUM BAND
    540.
    发明申请
    TRANSMISSION OF UPLINK CONTROL CHANNELS OVER AN UNLICENSED RADIO FREQUENCY SPECTRUM BAND 审中-公开
    无线无线电频谱带上传上行链路控制信道

    公开(公告)号:US20160036578A1

    公开(公告)日:2016-02-04

    申请号:US14813404

    申请日:2015-07-30

    Abstract: Techniques are described for wireless communication. A first method includes generating uplink control information at a wireless device, and transmitting the uplink control information over an interlace of a component carrier of an unlicensed radio frequency spectrum band. The interlace includes a plurality of non-contiguous concurrent resource blocks in the unlicensed radio frequency spectrum band, and at least two resource blocks in the interlace include different portions of the uplink control information. A second method includes generating uplink control information at a wireless device, and transmitting the uplink control information over an uplink control channel of an unlicensed radio frequency spectrum band. Resources of the uplink control channel are divided into a plurality of discrete dimensions and the uplink control information of the wireless device is transmitted over a number of the discrete dimensions allocated to the uplink control information of the wireless device.

    Abstract translation: 技术描述为无线通信。 第一种方法包括在无线设备处产生上行链路控制信息,以及通过未经许可的射频频带的分量载波的交错发送上行链路控制信息。 交错在非许可射频频带中包括多个不连续的并发资源块,并且交错中的至少两个资源块包括上行链路控制信息的不同部分。 第二种方法包括在无线设备处生成上行链路控制信息,并通过未经许可的射频频带的上行链路控制信道发送上行链路控制信息。 上行链路控制信道的资源被划分为多个离散维度,并且通过分配给无线设备的上行链路控制信息的多个离散维度来发送无线设备的上行链路控制信息。

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