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    • 4. 发明申请
    • RADIO-NETWORK NODE, WIRELESS DEVICE AND METHODS PERFORMED THEREIN
    • 无线电网络节点,无线设备及其中执行的方法
    • WO2017176183A1
    • 2017-10-12
    • PCT/SE2016/051068
    • 2016-11-01
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • WIBERG, NiclasBERGSTRÖM, AndreasHESSLER, MartinZHANG, QiangFRENNE, MattiasFURUSKOG, JohanANDERSSON, Håkan
    • H04L1/16H04L1/18
    • A method performed by a radio-network node for handling a data transmission from the radio-network node to a wireless device in a wireless communication network is provided. The radio-network node transmits (401) data over a number of subframes to the wireless device (10), and a respective control part, associated with the data of each respective subframe, the respective control part comprising a feedback index indicating a transmission time of a feedback indication. The radio-network node receives (402) from the wireless device the feedback indication in the feedback message common for the subframes of the data transmission according to the control parts of the transmitted subframes. The feedback indication indicates feedback for each subframe of the data transmission received and the number of NACKed subframes out of the number of subframes of the data transmission. The radio-network node receives the feedback message and then decides (403) whether or not to retransmit any of the subframes based on the feedback indication therein.
    • 提供了一种由无线电网络节点执行的用于在无线通信网络中处理从无线电网络节点到无线装置的数据传输的方法。 无线电网络节点在多个子帧上向无线设备(10)发送(401)数据以及与每个相应子帧的数据相关联的相应控制部件,相应控制部件包括指示传输时间的反馈索引 的反馈指示。 无线电网络节点根据发送的子帧的控制部分从无线设备接收(402)公共用于数据传输的子帧的反馈消息中的反馈指示。 反馈指示指示针对所接收的数据传输的每个子帧的反馈以及数据传输的子帧的数目中的NACK个子帧的数目。 无线电网络节点接收反馈消息,然后基于反馈指示决定(403)是否重传任何子帧。
    • 5. 发明申请
    • RECEIVE BEAMFORMING BASED ON REFERENCE SEQUENCES
    • 基于参考序列的接收波束形成
    • WO2017091137A1
    • 2017-06-01
    • PCT/SE2016/051168
    • 2016-11-24
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • WIBERG, NiclasSAHLIN, HenrikANDERSSON, HåkanFURUSKOG, Johan
    • H04B7/08
    • H04B7/088H04W24/00
    • The present disclosure relates to receive-beamforming techniques for selecting a receive-beam configuration for receiving signals in an Orthogonal Frequency-Division Multiplexing (OFDM) system, which may be implemented at a receiving device having a beamforming antenna with multiple antenna elements. The receiving device (10) receives, during one OFDM symbol period using one or more receive-beam configurations, a time-domain signal s comprising two or more instances of a reference sequence s' arranged contiguously. The receiving device further, for each receive-beam configuration, generates an evaluation metric using, for each receive-beam configuration, respective ones of the two or more instances of the reference sequence s'; and selects a receive-beam configuration based on the evaluation metric.
    • 本公开涉及用于在正交频分复用(OFDM)系统中选择用于接收信号的接收波束配置的接收波束成形技术,其可以在具有波束成形 带有多个天线元件的天线。 接收设备(10)在一个OFDM符号周期期间使用一个或多个接收波束配置接收包括连续布置的参考序列s'的两个或更多个实例的时域信号s。 对于每个接收波束配置,接收设备还为每个接收波束配置使用参考序列s'的两个或更多个实例中的相应一个生成评估度量; 并根据评估指标选择接收波束配置。
    • 6. 发明申请
    • A NETWORK NODE, A WIRELESS DEVICE AND METHODS THEREIN FOR HANDLING AUTOMATIC REPEAT REQUESTS (ARQ) FEEDBACK INFORMATION
    • 网络节点,无线设备及其处理自动重发请求(ARQ)反馈信息的方法
    • WO2016118054A1
    • 2016-07-28
    • PCT/SE2015/050052
    • 2015-01-21
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • BERGSTRÖM, AndreasFURUSKOG, JohanANDERSSON, HåkanZHANG, QiangWIBERG, Niclas
    • H04L1/16H04L1/18
    • H04L1/1887H04L1/1678H04L1/1685H04L1/1877H04W72/0413H04W72/048H04W72/1226
    • Embodiments herein relate to a method performed by a network node (110) in a wireless communications network (100) for handling Automatic Repeat reQuest, ARQ, feedback information from a wireless device (121) relating to downlink transmissions from the network node (110). The network node (110) obtains an indication of a downlink processing delay for the ARQ feedback information from the wireless device (121). Then, the network node (110) considers the ARQ feedback information relating to a downlink transmission from the wireless device (121) to be invalid when, according to the obtained indication of a downlink processing delay, the downlink transmission has not been processed by the wireless device (121). Embodiments of the network node (110) are also described. Furthermore, embodiments herein further relate to a wireless device (110) and method therein for enabling a network node (110) in a wireless communications network (100) to handle Automatic Repeat reQuest, ARQ, feedback information from the wireless device (121) relating to downlink transmissions from the network node (110).
    • 本文的实施例涉及由无线通信网络(100)中的网络节点(110)执行的方法,用于处理与来自网络节点(110)的下行链路传输有关的无线设备(121)的自动重传请求(ARQ)反馈信息, 。 网络节点(110)从无线设备(121)获得用于ARQ反馈信息的下行链路处理延迟的指示。 然后,当根据获得的下行链路处理延迟的指示,下行链路传输尚未被处理时,网络节点(110)考虑与无线设备(121)的下行链路传输有关的ARQ反馈信息是无效的 无线设备(121)。 还描述了网络节点(110)的实施例。 此外,本文的实施例还涉及无线设备(110)及其中的方法,用于使无线通信网络(100)中的网络节点(110)能够处理来自无线设备(121)的自动重传请求(ARQ)反馈信息 到来自网络节点(110)的下行链路传输。
    • 7. 发明申请
    • A NETWORK NODE AND A WIRELESS COMMUNICATION DEVICE FOR RANDOM ACCESS IN BEAM-BASED SYSTEMS
    • 一种网络节点和无线通信设备,用于基于波束的系统中的随机接入
    • WO2018084775A1
    • 2018-05-11
    • PCT/SE2017/051061
    • 2017-10-30
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • WIBERG, NiclasANDERSSON, HåkanZHANG, QiangFURUSKOG, Johan
    • H04W74/08H04W16/28
    • Embodiments herein relate to a method performed by a wireless communication device 615, for performing random access. The wireless communication device 615 is configured with a first Random-Access (RA) configuration. The method comprises obtaining an indication of a failure of a beam-tracking process. The method further comprises adapting the RA configuration of the wireless communication device 615 based on the obtained indication, wherein the adapting comprises switching from the first RA configuration to a second RA configuration having more frequently occurring RA resources than the first RA configuration. The method further comprises transmitting, to a network node 611, 612, a RA message using a RA resource, which RA resource is based on the adapted RA configuration. Embodiments herein further relate to a method performed by a serving network node 61 1, as well as a wireless communication device 615 and a serving network node 611 for performing the methods.
    • 这里的实施例涉及由无线通信设备615执行的用于执行随机接入的方法。 无线通信装置615配置有第一随机存取(RA)配置。 该方法包括获得波束追踪过程失败的指示。 该方法进一步包括基于所获得的指示来适配无线通信设备615的RA配置,其中该适配包括从第一RA配置切换到具有比第一RA配置更频繁出现的RA资源的第二RA配置。 该方法还包括使用RA资源向网络节点611,612传送RA消息,该RA资源基于适配的RA配置。 本文中的实施例进一步涉及由服务网络节点611执行的方法以及用于执行所述方法的无线通信设备615和服务网络节点611.
    • 10. 发明申请
    • COMMON PHASE ERROR COMPENSATION
    • 常见的相位误差补偿
    • WO2017180036A1
    • 2017-10-19
    • PCT/SE2016/050802
    • 2016-08-25
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • HESSLER, MartinLINDBOM, LarsFURUSKOG, Johan
    • H04L5/00H04L27/26H04J13/18
    • H04L5/0051H04J13/0048H04J2011/0016H04L27/2675
    • According to some embodiments, a method in a wireless receiver of compensating common phase error in a received wireless signal comprises receiving a first symbol of a wireless signal. The first symbol comprises a code division multiplexed demodulation reference signal (DM-RS) multiplexed with a length M orthogonal cover code, and a first code division multiplexed common phase error reference signal (CPE-RS) multiplexed with a length N orthogonal cover code, wherein N is less than or equal to M. The method further comprises determining M code points in the first symbol associated with a DM-RS; estimating a channel corresponding to the received wireless signal using the M code points associated with the DM-RS; estimating a first CPE-RS corresponding to the estimated channel using the first N code points of the M code points associated with the DM-RS; and compensating the estimated channel for phase error using the estimated first CPE-RS.
    • 根据一些实施例,一种补偿接收到的无线信号中的公共相位误差的无线接收机中的方法包括接收无线信号的第一符号。 第一码元包括与长度为M的正交覆盖码复用的码分多路复用解调参考信号(DM-RS)和用长度为N的正交覆盖码多路复用的第一码分多路复用公共相位误差基准信号(CPE-RS) 其中N小于或等于M.所述方法还包括确定与DM-RS相关联的所述第一码元中的M个码点; 使用与所述DM-RS相关联的所述M个码点来估计与所述接收到的无线信号相对应的信道; 使用与所述DM-RS相关联的所述M个代码点中的所述前N个代码点来估计与所估计的信道相对应的第一CPE-RS; 并使用所估计的第一CPE-RS来补偿所估计的相位误差信道。