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    • 84. 发明授权
    • Methods and arrangements in a wireless communications system
    • 无线通信系统中的方法和布置
    • US08441938B2
    • 2013-05-14
    • US12933594
    • 2008-12-10
    • Markus RingströmDirk GerstenbergerJohan Bergman
    • Markus RingströmDirk GerstenbergerJohan Bergman
    • H04L12/00H04J9/00
    • H04L1/1812H04L1/0001H04L1/1867H04W52/48
    • The present invention relates to methods and arrangements for uplink retransmissions from a user equipment to a radio base station in a UTRAN with enhanced uplink. The UE transmits a subframe comprising physical control channel(s) and physical data channel(s) in an initial transmission. According to the present invention, one or more of the physical control channels are transmitted with a lower transmission power level in all or some of the retransmitted subframes in the uplink. This results in reduced control overhead (a smaller part of the transmission power resource is used for control signaling) and thus reduced interference from the overhead. At the same time, the transmission power resource no longer used for the physical control channel information, can be used to increase the transmission power level of the physical data channel information in these retransmitted subframes, which improves the uplink coverage.
    • 本发明涉及从用户设备到具有增强上行链路的UTRAN中的无线电基站的上行链路重传的方法和装置。 UE在初始传输中发送包括物理控制信道和物理数据信道的子帧。 根据本发明,一个或多个物理控制信道在上行链路中的全部或部分重发子帧中以较低的发射功率电平发送。 这导致降低的控制开销(传输功率资源的较小部分用于控制信令),从而减少了开销的干扰。 同时,不再用于物理控制信道信息的发送功率资源可以用于增加这些重发子帧中的物理数据信道信息的发送功率电平,从而改善上行链路覆盖。
    • 86. 发明授权
    • Generation of MBSFN-DOB synchronization codes
    • 生成MBSFN-DOB同步码
    • US08400905B2
    • 2013-03-19
    • US12808784
    • 2008-09-18
    • Lars LindbomDirk GerstenbergerYi-Pin Eric Wang
    • Lars LindbomDirk GerstenbergerYi-Pin Eric Wang
    • H04H20/71
    • H04B1/7083H04B2201/70701H04J13/0014H04J13/102
    • Physical downlink channels PPHY1, PHY2 are summed in a summation unit 10. The output of summation unit 10 is forwarded to another summation unit 12, where it is combined with the primary and secondary synchronization channels P-SCH, S-SCH. The secondary synchronization channel S-SCH is formed as in WCDMA. The primary synchronization channel P-SCH is formed by connecting a switch SW either to a code generator 14 generating the conventional code PSCWCDMA or a code generator 18 generating the code PSCNEW. The selection is controlled by a PSC controller 18. This controller can be adapted to produce a P-SCH in accordance with one of several formats. PSCNEW has the properties that it is a hierarchical Golay sequence constructed by a plurality of constituent sequences with at least one of the constituent sequences being the Golay sequence, and that it is orthogonal to the primary and secondary synchronization codes used in non-MBSFN capable WCDMA.
    • 物理下行链路信道PPHY1,PHY2在求和单元10中相加。求和单元10的输出被转发到另一个求和单元12,其中它与主和辅同步信道P-SCH,S-SCH组合。 次同步信道S-SCH如WCDMA中那样形成。 主同步信道P-SCH是通过将开关SW连接到产生常规码PSCWCDMA的码发生器14或产生码PSCNEW的码发生器18来形成的。 该选择由PSC控制器18控制。该控制器可以适于根据若干格式之一产生P-SCH。 PSCNEW具有这样的属性,即它是由多个组成序列构成的分层格洛序列,其中至少一个组成序列是Golay序列,并且它与在非MBSFN能力的WCDMA中使用的主要和次要同步码正交 。
    • 89. 发明申请
    • METHODS AND ARRANGMENTS IN A WIRELESS COMMUNICATIONS SYSTEM
    • 无线通信系统中的方法和方案
    • US20110014907A1
    • 2011-01-20
    • US12933594
    • 2008-12-10
    • Markus RingströmDirk GerstenbergerJohan Bergman
    • Markus RingströmDirk GerstenbergerJohan Bergman
    • H04W4/00H04M1/00
    • H04L1/1812H04L1/0001H04L1/1867H04W52/48
    • The present invention relates to methods and arrangements for uplink retransmissions from a user equipment to a radio base station in a UTRAN with enhanced uplink. The UE transmits a subframe comprising physical control channel(s) and physical data channel(s) in an initial transmission. According to the present invention, one or more of the physical control channels are transmitted with a lower transmission power level in all or some of the retransmitted subframes in the uplink. This results in reduced control overhead (a smaller part of the transmission power resource is used for control signaling) and thus reduced interference from the overhead. At the same time, the transmission power resource no longer used for the physical control channel information, can be used to increase the transmission power level of the physical data channel information in these retransmitted subframes, which improves the uplink coverage.
    • 本发明涉及从用户设备到具有增强上行链路的UTRAN中的无线电基站的上行链路重传的方法和装置。 UE在初始传输中发送包括物理控制信道和物理数据信道的子帧。 根据本发明,一个或多个物理控制信道在上行链路中的全部或部分重发子帧中以较低的发射功率电平发送。 这导致降低的控制开销(传输功率资源的较小部分用于控制信令),从而减少了开销的干扰。 同时,不再用于物理控制信道信息的发送功率资源可以用于增加这些重发子帧中的物理数据信道信息的发送功率电平,从而改善上行链路覆盖。
    • 90. 发明申请
    • HS-SCCH Orders for CQI Mode Selection
    • 用于CQI模式选择的HS-SCCH命令
    • US20100322333A1
    • 2010-12-23
    • US12864190
    • 2009-01-23
    • Bo GoranssonJohan BergmanDirk Gerstenberger
    • Bo GoranssonJohan BergmanDirk Gerstenberger
    • H04K1/10
    • H04L1/0023H04L1/0027
    • A network node (28) communicates over a radio interface (32) with a wireless terminal (30). Both the network node (28) and the wireless terminal (30) have multiple-input multiple-output (MIMO) capabilities. A MIMO-related order (90) is generated for inclusion in control signaling on a high speed downlink shared channel from the network node (28) to the wireless terminal (30). The MIMO-related order (90) is configured to modify channel quality indication (CQI) communications between the wireless terminal (30) and the base station (28) in view of MIMO capabilities of the wireless terminal (30). The method further comprises providing a channel quality indication (CQI) report (92) the wireless terminal (30) to the base station (28) in accordance with the order.
    • 网络节点(28)通过无线电接口(32)与无线终端(30)进行通信。 网络节点(28)和无线终端(30)都具有多输入多输出(MIMO)能力。 生成MIMO相关顺序(90)以包括在从网络节点(28)到无线终端(30)的高速下行链路共享信道上的控制信令中。 MIMO相关顺序(90)被配置为考虑到无线终端(30)的MIMO能力来修改无线终端(30)和基站(28)之间的信道质量指示(CQI)通信。 该方法还包括根据该顺序向无线终端(30)提供信道质量指示(CQI)报告(92)给基站(28)。