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    • 41. 发明申请
    • CONTROLLING AN ANTENNA BEAM OPTIMIZATION ALGORITHM
    • 控制天线光束优化算法
    • WO2016141966A1
    • 2016-09-15
    • PCT/EP2015/054840
    • 2015-03-09
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • NILSSON, AndreasJALDÉN, Niklas
    • H04B7/02H04B7/06H04W16/28
    • H04W16/28H04B7/022H04B7/0617H04B7/0682H04W24/02H04W24/04H04W84/18
    • The present disclosure relates to a first wireless communication node (1) comprising at least one antenna arrangement (2), each antenna arrangement (2) having a beam pattern (3) with a certain first coverage (4). The first wireless communication node (1) is arranged to run a configuration algorithm to optimize the beam pattern (3). The first wireless communication node (1) is also arranged to determine if at least one neighbouring wireless communication node (5, 6; 5') is arranged to at least partly cover said first coverage (4) such that an at least partial overlap occurs, and to which degree said neighbouring wireless communication node (5, 6; 5') covers said first coverage (4). The first wireless communication node (1) is furthermore arranged to run the algorithm at a certain pace in dependence of said degree. The present disclosure also relates to a corresponding method.
    • 本公开涉及包括至少一个天线装置(2)的第一无线通信节点(1),每个天线装置(2)具有具有特定第一覆盖(4)的波束图案(3)。 第一无线通信节点(1)被布置成运行配置算法以优化波束图案(3)。 第一无线通信节点(1)还被布置为确定是否布置至少一个相邻无线通信节点(5,6; 5')以至少部分地覆盖所述第一覆盖(4),使得发生至少部分重叠 ,并且所述相邻无线通信节点(5,6; 5')覆盖所述第一覆盖(4)的程度。 第一无线通信节点(1)还被布置为根据所述程度以一定的速度运行算法。 本公开还涉及相应的方法。
    • 44. 发明申请
    • METHOD AND NODE FOR IMPROVING ERROR RATE PERFORMANCE BASED ON PACKET HEADER INFORMATION
    • 用于改进基于分组头信息的错误率性能的方法和节点
    • WO2015149868A1
    • 2015-10-08
    • PCT/EP2014/056825
    • 2014-04-04
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • NORLUND, KristerHANSSON, Anders
    • H04L1/00
    • H04L1/0047H04L1/0061H04L1/0079
    • The embodiments herein relate to a method in a first network node (101) for handling data packets in a communications system (100). The first network node (101) comprises a memory having stored on it at least part of a first header associated with a first data packet. The first network node (101) receives, from a second network node (105), a second data packet comprising a second header. The first network node (101) determines side information bits for the second data packet based on that at least part of the second header is assumed to be equal to or associated with the stored at least part of the first header. The first network node (101) performs at least one of channel estimation and decoding of the second data packet in which the side information bits for the second data packet are used as a priori information.
    • 本文的实施例涉及用于处理通信系统(100)中的数据分组的第一网络节点(101)中的方法。 第一网络节点(101)包括存储器,其中存储有与第一数据分组相关联的第一报头的至少一部分。 第一网络节点(101)从第二网络节点(105)接收包括第二头部的第二数据分组。 第一网络节点(101)基于第二头部的至少一部分被假设为等于或与存储的第一头部的至少部分相关联来确定第二数据分组的侧信息比特。 第一网络节点(101)执行将第二数据分组的侧信息比特用作先验信息的第二数据分组的信道估计和解码中的至少一个。
    • 46. 发明申请
    • HANDLING OF WIRELESS BACKHAUL LINKS
    • 无线链路的处理
    • WO2015120917A1
    • 2015-08-20
    • PCT/EP2014/053046
    • 2014-02-17
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • HESSLER, MartinBERGLUND, Joel
    • H04W28/00
    • H04W28/08H04W28/0268H04W72/082H04W72/087
    • There is provided handling of wireless links in a wireless backhaul network. Load information from an end-user access network and from a wireless backhaul network is acquired. A current network topology of the wireless backhaul network is associated with a current performance value as a function of the acquired load information. An estimated performance value for a new network topology is provided according to which at least one wireless link for a client node has been redirected from a current hub node sector to a new hub node sector. The at least one wireless link is redirected according to the new network topology in a case the estimated performance value is higher than the current performance value.
    • 提供无线回程网络中无线链路的处理。 从终端用户接入网络和无线回程网络收集信息。 无线回程网络的当前网络拓扑与当前性能值相关联,作为所获取的负载信息的函数。 提供了新的网络拓扑的估计性能值,根据该估计的性能值,客户端节点的至少一个无线链路已经被重定向到当前集线器节点扇区到新的集线器节点扇区。 在估计性能值高于当前性能值的情况下,根据新的网络拓扑重定向至少一个无线链路。
    • 47. 发明申请
    • A WIRELESS COMMUNICATION NODE WITH CROSS-POLARIZED ANTENNAS AND AT LEAST ONE TRANSFORMATION MATRIX ARRANGEMENT
    • 具有交叉极化天线和至少一个转换矩阵布局的无线通信节点
    • WO2015110157A1
    • 2015-07-30
    • PCT/EP2014/051313
    • 2014-01-23
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • ATHLEY, FredrikNILSSON, AndreasJOHANSSON, Martin
    • H04B7/10
    • H01Q1/243H01Q21/24H04B7/10
    • The present invention relates to a node (1) in a wireless communication network (38), where the node (1) comprises at least one antenna arrangement (2, 3, 4). Each antenna arrangement (2, 3, 4) in turn comprises at least four antenna devices (5, 6, 7, 8) with corresponding pairs of antenna ports (A, B, C, D) which in turn comprise corresponding first antenna ports (P1 A, P1 B, P1 C, P1 D) and second antenna ports (P2A, P2B, P2C, P2D). Each antenna device (5, 6, 7, 8) comprises at least one corresponding dual polarized antenna element (9, 10, 11, 12) arranged for transmitting and/or receiving signals at a first polarization (P1) via the corresponding first antenna port (P1 A, P1B, P1 C, P1D) and for transmitting and/or receiving signals at a second polarization (P2) via the corresponding second antenna port (P2A, P2B, P2C, P2D), where the polarizations (P1, P2) are mutually orthogonal. Each antenna arrangement (2, 3, 4) further comprises at least a first transformation matrix arrangement (13) which in turn comprises at least four corresponding virtual antenna ports (14, 15, 16, 17; 19, 20, 21, 22). The antenna ports (P1A, P1 B, P1 C, P1D; P2A, P2B, P2C, P2D) are at least indirectly connected to each transformation matrix arrangement (13, 18). Each transformation matrix arrangement (13, 18) is arranged to set a certain polarization state for each corresponding virtual antenna port (14, 15, 16, 17; 19, 20, 21, 22).
    • 本发明涉及无线通信网络(38)中的节点(1),其中节点(1)包括至少一个天线装置(2,3,4)。 每个天线装置(2,3,4)又包括至少四个具有对应的天线端口对(A,B,C,D)的天线装置(5,6,7,8),这些天线端口(A,B,C,D)又包括对应的第一天线端口 (P1A,P1B,P1C,P1D)和第二天线端口(P2A,P2B,P2C,P2D)。 每个天线装置(5,6,7,8)包括至少一个对应的双极化天线元件(9,10,11,12),其布置用于经由相应的第一天线在第一极化(P1)处发送和/或接收信号 端口(P1A,P1B,P1C,P1D),并且用于经由相应的第二天线端口(P2A,P2B,P2C,P2D)以第二极化(P2)发送和/或接收信号,其中极化(P1,P2 )相互正交。 每个天线装置(2,3,4)还包括至少第一变换矩阵装置(13),该装置又包括至少四个对应的虚拟天线端口(14,15,16,17; 19,20,21,22) 。 天线端口(P1A,P1B,P1C,P1D; P2A,P2B,P2C,P2D)至少间接地连接到每个变换矩阵布置(13,18)。 每个变换矩阵布置(13,18)被布置成为每个对应的虚拟天线端口(14,15,16,17; 19,20,21,22)设置一定的偏振状态。
    • 49. 发明申请
    • A POWER DETECTOR
    • 电源检测器
    • WO2015090357A1
    • 2015-06-25
    • PCT/EP2013/076777
    • 2013-12-16
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • BAO, Mingquan
    • G01R21/10
    • G01R21/10G01R21/12
    • A power detector (100, 200, 300, 400) comprising a first (110) and a second (115) bipolar junction/FET transistor. The first transistor (110) is arranged as a common base/gate transistor with its base/gate being biased by a bias voltage (V b1 ) and the second transistor (115) is arranged as a common emitter/source transistor with its emitter/source being grounded. The power detector also comprises a diode or current source connected to ground from the emitter/source of the first transistor (110), in which power detector an input port (105) is connected to the emitter of the first transistor (110) and to the base/gate of the second transistor (115), and an output port (125) is connected to the collectors/drains of the first (110) and second transistor (115), said collectors/drains also being connected to a DC supplier (V c ) via a first resistor (130).
    • 包括第一(110)和第二(115)双极结/ FET晶体管的功率检测器(100,200,300,400)。 第一晶体管(110)被布置为公共基极/栅极晶体管,其基极/栅极被偏置电压(Vb1)偏置,并且第二晶体管(115)被布置为具有其发射极/源极的公共发射极/源极晶体管 接地 功率检测器还包括从第一晶体管(110)的发射极/源极接地的二极管或电流源,其中功率检测器的输入端口(105)连接到第一晶体管(110)的发射极,并且 第二晶体管(115)的基极/栅极和输出端口(125)连接到第一晶体管(110)和第二晶体管(115)的集电极/漏极,所述集电极/漏极还连接到DC供应器 (Vc)经由第一电阻器(130)。