Antenna array beam-steering by the integration of a series phase shifter

H. Scott, V. Fusco
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引用次数: 5

Abstract

Beam steering is defined as the ability to electronically steer the beam maximum of an antenna electric field pattern to some predefined point in space. Leaky wave antennas can be used for such a purpose but include inherent problems such as large size, difficulty in impedance matching and a large number of sidelobes in the resultant electric field pattern. This paper concentrates on a method for mimicking the operation of a typical leaky wave antenna array by the simple integration of a phase shifter into the array structure. Up to 12/spl deg/ beam steer is demonstrated using the integrated array whose structure is short and compact compared to the typical leaky wave arrays. The bias voltage of the phase shifter is used to control the impedance match of the array reducing the VSWR to below 1.5 where the 12/spl deg/ beam steer is experienced. The phase shift between the elements of the array, used to provide beam steering, is provided by scanning the frequency through a range of frequencies from 1.17 GHz to 1.23 GHz. This range is greatly reduced from typical leaky wave antenna arrays because the phase shifter also acts to provide an additional phase shift between the elements. The resultant radiation patterns also show improved characteristics as the number of sidelobes has been decreased.
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由串联移相器集成的天线阵列波束控制
波束转向是指通过电子手段将天线电场方向图的波束最大值引导到空间中某个预定点的能力。漏波天线可以用于这一目的,但其固有的问题包括尺寸大、阻抗匹配困难以及产生的电场图中有大量的副瓣。本文研究了一种通过将移相器简单地集成到阵列结构中来模拟典型漏波天线阵列工作的方法。与典型的漏波阵列相比,集成阵列的结构短而紧凑,可达到12/spl度/波束导向。移相器的偏置电压用于控制阵列的阻抗匹配,将驻波比降低到1.5以下,从而经历12/spl度/波束转向。阵列元素之间的相移,用于提供波束转向,是通过扫描频率范围从1.17 GHz到1.23 GHz来提供的。这个范围比典型的漏波天线阵列大大减小,因为移相器还在元件之间提供额外的相移。随着副瓣数的减少,所得的辐射图也显示出改进的特性。
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