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    • 44. 发明公开
    • BANDWIDTH EFFICIENT ACKNOWLEDGEMENT/NEGATIVE ACKNOWLEDEGMENT
    • 带宽有效的确认/否认
    • EP1133848A1
    • 2001-09-19
    • EP99963752.3
    • 1999-11-24
    • Telefonaktiebolaget L M Ericsson (Publ)
    • KHAN, FarooqJÄVERBRING, StefanFURUSKÄR, AndersWALLMAN, Mattias
    • H04L1/18
    • H04L1/1809H04L1/1614H04L1/1621
    • A method and technique are provided for efficiently acknowledging transmitted information in a system that employs variable rate data transmission, and skips data block sequence numbers depending on the transmission rate used. An RBB field in an ACK/NACK message includes a starting sequence number, an indication of a sequence number step, and a bitmap. The starting sequence number indicates a first block in a series or sequence of transmitted blocks that are being acknowledged via the ACK/NACK message. The sequence number step indicates a minimum difference between sequence numbers of blocks in the sequence. Where the sequence is ordered, the sequence number step is a difference between the sequence numbers of adjacent or consecutive blocks in the series. The bitmap is configured so that each bit in the bitmap represents an acknowledgment of one of blocks in the series. The RBB field can also include multiple starting sequence numbers, and both a sequence number step and a length for each starting sequence number. Each set of starting sequence number, sequence number step and length indicates a subseries or subsequence of the series of transmitted blocks that is being acknowledged via the ACK/NACK message. The starting sequence number indicates a sequence number of a first block in the subsequence, the length indicates how many blocks are in the subsequence, and the sequence number step indicates a difference between sequence numbers of adjacent blocks in the subsequence.
    • 46. 发明申请
    • SELECTION OF ACCESS POINTS FOR COORDINATED MULTIPOINT UPLINK RECEPTION
    • 选择用于协调多点上接收接收的接入点
    • WO2014062104A1
    • 2014-04-24
    • PCT/SE2012/051112
    • 2012-10-17
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • HESSLER, MartinFURUSKÄR, Anders
    • H04W48/00H04W36/00
    • H04B7/024H04B17/364H04W36/0061H04W36/0083H04W48/20
    • The proposed technology involves a mechanism for selecting, for a user, access points for coordinated multipoint (COMP) uplink reception. The method comprises obtaining (S1), for each of a number of candidate access points, at least one uplink measurement result. The method also involves combining (S2) candidate access points to form at least two different sets of access points from the candidate access points. The method comprises estimating (S3), for each one of the at least two different sets of access points, an uplink quality measure based on the uplink measurement results of the considered set of access points, and determining (S4), for each one of the at least two different sets of access points, a measure representative of the number of transmission opportunities available to the user for the considered set of access points over a given period of time. The method also comprises selecting (S5) which one of the at least two different sets of access points to use for COMP uplink reception based on the uplink quality measure and the measure representative of the number of transmission opportunities available to the user over the given period of time.
    • 所提出的技术涉及用于为用户选择用于协调多点(COMP)上行链路接收的接入点的机制。 所述方法包括:对于多个候选接入点中的每一个获得至少一个上行链路测量结果(S1)。 该方法还涉及组合(S2)候选接入点以从候选接入点形成至少两个不同的接入点组。 该方法包括:基于所考虑的一组接入点的上行链路测量结果,针对所述至少两个不同的接入点集合中的每一个来估计(S3)上行链路质量测量,并且确定(S4) 所述至少两个不同的接入点集合,表示在给定时间段内针对所考虑的一组接入点的用户可用的传输机会的数量的度量。 该方法还包括:(S5)基于上行链路质量测量和代表在给定周期内用户可用的传输机会数量的测量(S5)中的至少两个不同接入点组中的哪一个用于COMP上行链路接收 的时间。