发明名称 NODE FOR HIGH-RISE BUILDING COVERAGE
摘要 The present invention relates to a communication node (1) comprising at least one antenna arrangement (2) with two horizontal and two vertical array antennas. A first horizontal antenna port (4) and a second vertical antenna port (10) are connected to a first polarization (P1). A first vertical antenna port (8) and a second horizontal antenna port (6) are connected to an orthogonal second polarization (P2). Each port is connected to corresponding antenna elements. Said first horizontal antenna port (4) and said first vertical antenna port (8) are connected in phase. Said second horizontal antenna port (6) and said second vertical antenna port (10) are connected with opposite phases. A plurality of antenna element symmetry pairs (11a, 12a; 11b, 12b; 11c, 12c; 11d, 12d; 13a, 14a; 13b, 14b; 13c, 14c; 13d, 14d) are formed with respect to a common symmetry point (15). Certain weights are applied to the antenna elements of each symmetry pair, where a weight for a certain polarization (P1, P2) in an antenna element in a symmetry pair comprises the complex conjugated weight for an orthogonal polarization (P2, P1) in the other antenna element in the symmetry pair.
申请公布号 US2015009091(A1) 申请公布日期 2015.01.08
申请号 US201313882366 申请日期 2013.04.25
申请人 TELEFONAKTIEBOLAGET L M ERICSSON (PUBL) 发明人 Nilsson Andreas;Athley Fredrik;Johansson Martin
分类号 H01Q21/24;H01Q21/26;H01Q21/00;H04B7/26 主分类号 H01Q21/24
代理机构 代理人
主权项 1. A node in a wireless communication system, the node comprising at least one antenna arrangement, each antenna arrangement comprising a first horizontal array antenna with at least one first horizontal antenna port a second horizontal array antenna with at least one second horizontal antenna port, a first vertical array antenna with at least one first vertical antenna port, and a second vertical array antenna with at least one second vertical antenna port, each horizontal array antenna port being connected to a corresponding set of horizontal antenna elements arranged along a horizontal extension, and each vertical array antenna port being connected to a set of vertical antenna elements arranged along a vertical extension, which vertical extension is perpendicular to the horizontal extension, each set of horizontal antenna elements being arranged to radiate a main beam having a half-power beamwidth in an elevation direction, around the horizontal extension, which exceeds its half-power beamwidth in an azimuth direction, around the vertical extension, with at least a factor two, and each set of vertical antenna elements being arranged to radiate a main beam having a half-power beamwidth in the azimuth direction which exceeds its half-power beamwidth in the elevation direction with at least a factor two, the first horizontal array antenna and the first vertical array antenna constituting a first antenna pair, and the second horizontal array antenna and the second vertical array antenna constituting a second antenna pair, wherein wherein a first horizontal antenna port is connected to a first polarization in the corresponding antenna elements and a first vertical antenna port is connected to a second polarization the corresponding antenna elements, and where a second horizontal antenna port is connected to the second polarization in the corresponding antenna elements, and a second vertical antenna port is connected to the first polarization in the corresponding antenna elements, the first polarization and the second polarization being mutually orthogonal, where said first horizontal antenna port and said first vertical antenna port are connected in phase, and where said second horizontal antenna port and said second vertical antenna port are connected with opposite phases, where, with respect to a common symmetry point, each antenna element in the first antenna pair is symmetrically arranged to a corresponding antenna element in the second antenna pair such that a plurality of antenna element symmetry pairs are formed, where certain weights, wn, are applied to the antenna elements of each symmetry pair, and where a weight, wn, for a certain polarization in an antenna element in a symmetry pair comprises the complex conjugated weight, wn*, for an orthogonal polarization in the other antenna element in the symmetry pair.
地址 STOCKHOLM SE