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    • 1. 发明授权
    • Link layer control protocol implementation
    • 链路层控制协议实现
    • US08369854B2
    • 2013-02-05
    • US12516699
    • 2007-12-19
    • Janne PeisaMichael MeyerAndrás RáczMats SågforsJohan Torsner
    • Janne PeisaMichael MeyerAndrás RáczMats SågforsJohan Torsner
    • H04W36/00
    • H04W36/26H04W36/02
    • A radio base station suitable for performing a handover operation for a LTE-variant of a radio access network comprises a transceiver and a status report requester. The transceiver is configured to facilitate wireless transmission between the radio base station and a wireless terminal over an air interface, including transmission of a radio link bearer for the connection over a downlink from the radio base station to the wireless terminal. The status report requester is configured to determine, according to one or more pre-defined criteria, whether to request from the wireless terminal a status report for a radio bearer prior to the radio base station transferring user data for the connection to another radio base station in conjunction with a handover.
    • 适合于对无线电接入网络的LTE变型进行切换操作的无线电基站包括收发机和状态报告请求者。 收发器被配置为促进无线基站和无线终端之间通过空中接口的无线传输,包括通过无线电基站到无线终端的下行链路的连接的无线电链路承载的传输。 状态报告请求者被配置为根据一个或多个预定义的准则来确定在无线电基站传送用于连接到另一个无线电基站的用户数据之前是否从无线终端请求无线承载的状态报告 结合切换。
    • 4. 发明申请
    • MAC-D Multiplexing in UTRAN HSDPA Wireless Networks
    • UTRAN HSDPA无线网络中的MAC-D复用
    • US20130250877A1
    • 2013-09-26
    • US13835744
    • 2013-03-15
    • Anna LarmoStefan WagerJanne PeisaJohan TorsnerMats Sågfors
    • Anna LarmoStefan WagerJanne PeisaJohan TorsnerMats Sågfors
    • H04W72/04
    • H04W72/042H04B7/2603H04L1/0002H04L1/1819H04L12/4633H04W28/06H04W72/04
    • UTRAN MAC-d multiplexing of data from multiple logical channels to a single MAC-d flow is supported while reducing overhead and achieving octet alignment in MAC-d PDU length. In one embodiment, the C/T field of a multiplexed MAC-d PDU is eliminated, and the logical channels multiplexed into the MAC-d flow are mapped to a MAC-hs PQ in at least the NodeB (and preferably in the UE as well). In other embodiments, the C/T field is retained, and an octet-aligned length indicator is transmitted from the RNC to the UE. In one embodiment, the length indicator is octet-aligned by padding the MAC-d PDUs. In another embodiment, transmitters and receivers in the path from RNC to UE are configured with an offset to add to the length indicator to achieve octet alignment. The padding or offset is (8-n) bits, where n=the number of bits in C/T field.
    • 支持从多个逻辑信道到单个MAC-d流的数据的UTRAN MAC-d复用,同时减少开销并在MAC-d PDU长度内实现八位位组对准。 在一个实施例中,消除了复用的MAC-d PDU的C / T字段,并且复用到MAC-d流中的逻辑信道被映射到至少节点B(并且优选地在UE中的MAC-hs PQ) 好)。 在其他实施例中,C / T字段被保留,并且八位字节对齐的长度指示符从RNC发送到UE。 在一个实施例中,长度指示符通过填充MAC-d PDU进行八位字节对齐。 在另一个实施例中,从RNC到UE的路径中的发射机和接收机被配置有偏移量以添加到长度指示符以实现八位字节对准。 填充或偏移量为(8-n)位,其中n = C / T域中的位数。
    • 8. 发明授权
    • Method and apparatus in a telecommunications network
    • 电信网络中的方法和装置
    • US08588845B2
    • 2013-11-19
    • US12991629
    • 2009-01-28
    • Stefan ParkvallJohan TorsnerMichael MeyerMats SågforsRobert BaldemairDavid AstelyHenning Wiemann
    • Stefan ParkvallJohan TorsnerMichael MeyerMats SågforsRobert BaldemairDavid AstelyHenning Wiemann
    • H04M1/00
    • H04L1/1635H04L5/0053H04L5/0094
    • According to the present invention, a receiving node of a telecommunications network (20) (e.g. a radio base station (22) in uplink, or a mobile terminal (24) in downlink) transmits a single acknowledgement message to a transmitting node (e.g. a mobile terminal (24) in uplink, or a radio base station (22) in downlink) in respect of signals received over a plurality of frequency-aggregated carriers (component carriers) (10) between the transmitting and receiving nodes. If all signals are decoded correctly in the receiving node, a positive acknowledgement message (ACK) is sent to the transmitting node; if not all signals are decoded correctly, a negative acknowledgement message (NACK) is sent, or no acknowledgement message is sent. In this way, a single acknowledgement message can be sent for signals received over multiple carriers. The acknowledgement message can have the same format as legacy standards (for example, as specified in Release 8 of the 3GPP specifications), providing compatibility with existing equipment. The number of messages is also reduced compared with the straightforward approach of transmitting individual acknowledgement messages per component carrier.
    • 根据本发明,电信网络(20)(例如,上行链路中的无线电基站(22)或下行链路中的移动终端(24))的接收节点向发送节点(例如, 关于在发送节点和接收节点之间的多个频率聚合载波(分量载波)(10)上接收的信号,上行链路中的移动终端(24)或下行链路中的无线电基站(22)。 如果所有信号在接收节点中被正确地解码,则肯定确认消息(ACK)被发送到发送节点; 如果不是全部信号被正确地解码,则发送否定确认消息(NACK),或者不发送确认消息。 以这种方式,可以针对在多个载波上接收的信号发送单个确认消息。 确认消息可以具有与传统标准相同的格式(例如,如3GPP规范的版本8中所规定),提供与现有设备的兼容性。 与每个分量载波发送各个确认消息的简单方法相比,消息的数量也减少了。
    • 10. 发明授权
    • Methods and arrangements in radio communication systems
    • 无线电通信系统中的方法和布置
    • US09137765B2
    • 2015-09-15
    • US13025893
    • 2011-02-11
    • Magnus LindströmLisa BoströmJanne PeisaMats SågforsHenning Wiemann
    • Magnus LindströmLisa BoströmJanne PeisaMats SågforsHenning Wiemann
    • H04J3/06H04W56/00
    • H04W56/0005H04W56/0045
    • Methods and arrangements for adjusting timing of transmissions in a radio communication system in which aggregation of component carriers is employed are disclosed. A base station sends a first TA command applicable to a first component carrier to a user equipment. A need to maintain different uplink transmission timing for the first user equipment component carrier and second uplink component carrier is detected by the base station. The base station then sends a second TA command based on the detected need to maintain different uplink transmission timing. The second TA command is applicable to uplink transmissions on the first component carrier and/or the second component carrier. The user equipment adjusts uplink transmissions on the first component carrier and/or the second uplink component carrier based on the second timing advance command.
    • 公开了在采用分量载波的聚合的无线电通信系统中调整发送定时的方法和装置。 基站向用户设备发送适用于第一分量载波的第一TA命令。 由基站检测到对于第一用户设备分量载波和第二上行链路分量载波维持不同的上行链路传输定时的需要。 基站然后基于检测到的维持不同上行链路传输定时的需要发送第二TA命令。 第二TA命令适用于第一分量载波和/或第二分量载波上的上行链路传输。 用户设备基于第二定时提前命令来调整第一分量载波和/或第二上行链路分量载波上的上行链路传输。