Butler matrix structure for beam-forming network

A matrix structure and network technology, applied in the direction of space transmit diversity, electrical components, antennas, etc., can solve the problems of poor bridge bandwidth characteristics, poor isolation bandwidth, narrow isolation bandwidth, etc., and achieve good consistency and stability , size reduction, wide bandwidth effect

Inactive Publication Date: 2010-05-12
TONGYU COMM INC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] First of all, the bandwidth characteristics of a single bridge are not good, especially the isolation bandwidth is poor. For example, under the entire operating frequency of the antenna array, the isolation of the bridge is generally only higher than 20dB;
[0005] Secondly, the above scheme also has phase-shift extension lines, an

Method used

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  • Butler matrix structure for beam-forming network
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  • Butler matrix structure for beam-forming network

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Embodiment Construction

[0031] The present invention will be described in further detail below in conjunction with the accompanying drawings and specific embodiments, but not as a limitation of the present invention.

[0032] This embodiment adopts a 2X4 Butler matrix structure. Such as figure 1 As shown, it shows a schematic diagram of the three-layer circuit board structure of this embodiment. As can be seen from the figure, this embodiment includes: four antenna array ports, respectively marked as Out1, Out2, Out3, Out4; two beam ports , respectively marked as portA, portB; two unequal power distribution coupling type power splitter units, respectively marked as 1a, 1b; two equal power distribution coupling type power splitter units, respectively marked as 2a, 2b; Phase unit, respectively marked as 3a, 3b; two matching ports, respectively marked as C, D; two through holes 4, in order to realize the direct current conduction of the upper layer and the lower layer; each port has an isolated metal b...

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Abstract

The invention discloses a Butler matrix structure for a beam-forming network, which is provided with a plurality of wave beam ports and a plurality of antenna array ports, wherein the plurality of wave beam ports are used for receiving corresponding input radio frequency signals; the plurality of antenna array ports are used for outputting coherent signals to a plurality of corresponding antenna array units; the plurality of wave beam ports for receiving the corresponding input radio frequency signals correspond to at least one antenna wave beam pattern responding to the corresponding input radio frequency signals; and the plurality of wave beam ports and the plurality of antenna array ports are mutually connected by a network in between consisting of a plurality of coupling power divider units and a plurality of phase shifter units. The structure is etched on a three-layer printed circuit board and has the advantages of small volume, wide bandwidth range, excellent consistency and stability, high insulation and the like.

Description

[technical field] [0001] The invention relates to a Butler matrix beamforming network of a multi-beam antenna, and more particularly relates to a multi-layer PCB board structure of a 2X4 Butler matrix with high isolation. [technical background] [0002] Multi-beam antennas were mostly used in satellite communications in the early days, but with the rapid development of mobile communications, they are facing problems such as insufficient spectrum capacity. Multi-beam antennas are used in the field of cellular mobile communications to increase network capacity due to their directional pattern characteristics that can generate multiple beams at the same time. [0003] The Butler matrix is ​​the key structure for generating multiple beams. The 2X4 Butler matrix of the present invention can connect four antenna arrays and generate two different beams at two beam ports. The Butler matrix design includes a power division unit and a phase shift unit, wherein the power division unit...

Claims

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Application Information

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IPC IPC(8): H04B7/06H01Q25/00H01Q3/40
Inventor 陈鹏伍裕江曾骏
Owner TONGYU COMM INC
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