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    • 7. 发明申请
    • METHOD AND ARRANGEMENT IN A WIRELESS COMMUNICATION SYSTEM
    • 无线通信系统中的方法和布置
    • WO2010090566A1
    • 2010-08-12
    • PCT/SE2009/050131
    • 2009-02-09
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)PETTERSSON, JonasSANDLUND, Kristofer
    • PETTERSSON, JonasSANDLUND, Kristofer
    • H04W72/12
    • H04W72/1221
    • Method and arrangement in a base station (110) for computing a delay time parameter of data comprised in a buffer of a terminal (120). The base station (110) and the terminal (120) are comprised within a wireless communication system (100). The terminal buffer is arranged to comprise frames, which frames in turn are arranged to comprise data. The method comprises determining (301) a service requested by the terminal, estimating (303) the arrival time of the last frame comprising transmit data to be received from the terminal (120), estimating (304) the number of frames comprised in the buffer of the terminal (120), establishing (305) a frame interval according to the determined service and estimating (306) the arrival time of the oldest frame in the terminal buffer by subtracting, from the estimated arrival time of the last received frame comprising transmit data, one established frame interval for each frame the terminal buffer is estimated to comprise, additional to the oldest frame.
    • 一种用于计算包括在终端(120)的缓冲器中的数据的延迟时间参数的基站(110)中的方法和装置。 基站(110)和终端(120)包括在无线通信系统(100)内。 终端缓冲器被布置成包括帧,这些帧依次被布置成包括数据。 该方法包括:确定(301)由终端请求的服务,估计(303)包括从终端(120)接收的发送数据的最后一帧的到达时间,估计(304)缓冲器中包括的帧数 (120),根据所确定的服务建立(305)帧间隔,并且从包括发送的最后接收帧的估计到达时间中减去(306)最早帧在终端缓冲器中的到达时间 数据,终端缓冲器估计包括除了最旧的帧之外的每个帧的一个建立的帧间隔。
    • 9. 发明申请
    • METHOD AND ARRANGEMENT FOR LOAD BALANCING IN A TELECOMMUNICATIONS SYSTEM
    • 电信系统中负载均衡的方法和布置
    • WO2011093758A1
    • 2011-08-04
    • PCT/SE2010/050103
    • 2010-02-01
    • Telefonaktiebolaget L M Ericsson (publ)ERIKSSON, ErikJERSENIUS, KristinaSANDLUND, Kristofer
    • ERIKSSON, ErikJERSENIUS, KristinaSANDLUND, Kristofer
    • H04L1/18H04W72/12
    • H04W72/0486H04L1/1887
    • The present invention relates to a method and a base station (14, 700)for load balancing in Semi-Persistent Scheduling, SPS transmission. The method can comprise to activate downlink or uplink SPS transmission for a User Equipment (12, step 204), and to obtain information about transmission load comprising SPS transmission or HARQ ACK/NACK responses to SPS transmissions, on a Physical Shared or Control Channel (steps 206; 402; 406; 502, 504, 508, 510). Based on the obtained information it is determined for which subframe within aduration of T subframes, the transmission load comprising SPS transmission or HARQ ACK/NACK response to SPS transmissions, on a Physical Shared Channel or on a Physical Control Channel is the lowest within the duration of T subframes (steps 208; 404; 408; 506, 512, 514). SPS transmission is then scheduled to be valid in the determined subframe having the lowest SPS transmission load on the Physical Shared Channelor to be valid in a subframe causing the HARQ ACK/NACK responses to the SPS transmissions to be transmitted in the subframe having the lowest of HARQ ACK/NACK responses to the SPS transmissions, within the duration of T subframes (step 210).This load balancing provides a number of advantages comprising less postponed scheduling, less unused subframes and less collisions on said channels.
    • 本发明涉及一种用于半持续调度,SPS传输中的负载均衡的方法和基站(14,700)。 该方法可以包括为用户设备(12,步骤204)激活下行链路或上行链路传输,并且在物理共享或控制信道(获得用户设备)上获得关于包括SPS传输的SPS传输或HARQ ACK / NACK响应的关于传输负载的信息 步骤206; 402; 406; 502,504,508,510)。 基于所获得的信息,确定T子帧内的哪个子帧,包括SPS发送的传输负载或在SPS物理共享信道上或物理控制信道上的SPS发送的HARQ ACK / NACK响应在持续时间内是最低的 的T个子帧(步骤208; 404; 408; 506,512,514)。 然后将SPS传输调度为在物理共享信道上具有最低SPS传输负载的所确定的子帧中有效,在子帧中有效的子帧导致在具有最低的SPS传输的子帧中发送针对SPS传输的HARQ ACK / NACK响应 在T个子帧的持续时间内对SPS传输的HARQ ACK / NACK响应(步骤210)。该负载平衡提供了许多优点,包括较少的推迟调度,较少未使用的子帧以及在所述信道上较少的冲突。
    • 10. 发明申请
    • INCLUSION OF QUALITY OF SERVICE INDICATION IN HEADER COMPRESSION CHANNEL
    • 服务质量指示在报头压缩信道中的包含
    • WO2008027005A2
    • 2008-03-06
    • PCT/SE2007/050597
    • 2007-08-30
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • PELLETIER, GhyslainSANDLUND, Kristofer
    • H04L29/06H04L29/08
    • H04L69/04H04L67/04H04L69/22
    • Quality of service information (QoS 1 ) is included with a compressed header of a data packet and can be utilized by nodes supporting the header compression channel to perform QoS enforcements at a sub-flow granularity level. A basic mode of a method comprises (1) processing a packet using a process having a process-associated quality of service requirement to form a processed packet, and (2) including, with a compressed header for the processed packet, the header-included quality of service information which is derived using information indicative of the process-associated quality of service requirement. In another mode the header-included quality of service information is derived both from the process-associated quality of service requirement and quality of service information extracted from the received packet.
    • 服务质量信息(QoS <1>)被包括在数据分组的压缩报头中,并且可以被支持报头压缩信道的节点利用来执行QoS强制 子流粒度级别。 方法的基本模式包括(1)使用具有与处理相关的服务质量要求的处理来处理分组以形成经处理的分组,以及(2)利用用于经处理的分组的压缩报头来包括所述报头 使用指示与过程相关的服务质量要求的信息导出的服务质量信息。 在另一种模式中,包含首标的服务质量信息是从与过程相关的服务质量要求和从接收的数据包中提取的服务质量信息中导出的。