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Method of Synthesizing a Beam-Forming Device for the N-Beam and N-Element Array Antenna, for any N

机译:合成任意N个N波束和N元素阵列天线的波束形成设备的方法

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摘要

The possibility of forming a set of spatially dispersed and mutually orthogonal beams in an array antenna has been known long ago. The method for obtaining a device that forms a fan of beams for arrays with the number of elements and beams equal to N = 2p was suggested by Butler. Realizing a fan of mutually orthogonal beams for arrays with any N, was shown by us in "Synthesis of pattern forming networks" Radio Engineering and Electronic Physics, vol. 27, no. 7, pp. 28-35, 1982. The schemes of the corresponding devices for N = 5, 6 and 8 were also represented, however, the method for building a concrete scheme was described there without details. The present paper is dedicated to the procedure of synthesizing a beam-forming device based on the factorization of its transmission matrix, at this point, each factor represents a matched and decoupling hybrid. As a result, the beam-forming network is represented by a cascade connection of elementary matrices containing one hybrid or several 90° phase shifters. The procedure is illustrated using examples of synthesizing matrices for N = 8 and N = 9 having broadside beams, and also that for N = 6 where the left and right beams are symmetrical as normally assumed for "Butler" matrices. Furthermore, the scheme with N = 8 is compared with the corresponding "Butler" matrix.
机译:很早以前就已经知道在阵列天线中形成一组空间上分散且相互正交的波束的可能性。 Butler提出了一种获得形成光束扇形的设备的方法,该阵列的光束和元素的数量等于N = 2 p 。我们在“图样形成网络的合成”(《无线电工程和电子物理》,第1卷,第1期)中实现了具有任意N的阵列的相互正交光束的扇形。 27号参见1982年第7卷,第28-35页。还表示了N = 5、6和8的相应装置的方案,但是,这里没有详细描述构建具体方案的方法。本文致力于基于波束形成设备的传输矩阵的分解来合成波束形成设备的过程,在这一点上,每个因子代表一个匹配和解耦的混合信号。结果,波束形成网络由包含一个混合或多个90°相移器的基本矩阵的级联表示。使用具有宽边光束的N = 8和N = 9的矩阵合成示例,以及对于N = 6的合成矩阵示例,其中左光束和右光束对称,这通常是“巴特勒”矩阵所假定的。此外,将N = 8的方案与相应的“巴特勒”矩阵进行比较。

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