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Design of a Six-Sector Switched Parasitic Planar Array Using the Method of Genetic Algorithms

机译:基于遗传算法的六扇区开关寄生平面阵列设计

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摘要

Switched parasitic planar arrays, as possible implementations of smart antennas, and an efficient method of designing them are presented in this paper. The radiation pattern of an array can be controlled by a digital word, the insertion of which in the antenna feeding circuit achieves electronic beam steering. The 1s and the 0s in the digital word represent the active and short-circuited elements in the array, respectively. The aim of the design is to cover the azimuth plane with six radiation patterns, each one having 3 dB beamwidth equal to 60° and relative sidelobe level not more than -3 dB. The well-known genetic algorithms are used to optimize the antenna performance, determining the element positions and voltage phase values. This is made feasible by selecting the digital words, among the 2{sup}N - 1 available (N-number of elements), which maximize the objective function containing the pattern requirements of the design. The numerical results presented show a possible application of this idea. An array of seven identical dipoles λ/2 offers diagrams, with an average 3 dB beamwidth equal to 63°. Relative sidelobe levels lower than -3 dB are obtained. Simulations at different frequencies prove that the array designed here is a narrowband one and its bandwidth is 2.5% of the carrier frequency.
机译:本文介绍了开关寄生平面阵列,作为智能天线的可能实现方式,以及一种有效的设计方法。阵列的辐射方向图可以由数字字控制,将其插入天线馈电电路即可实现电子波束控制。数字字中的1和0分别代表阵列中的活动元素和短路元素。设计的目的是用六个辐射图覆盖方位平面,每个辐射图的3 dB波束宽度等于60°,相对旁瓣电平不超过-3 dB。众所周知的遗传算法用于优化天线性能,确定元件位置和电压相位值。通过在2 {sup} N-1个可用的数字字(N个元素)中选择数字字,使包含设计图案要求的目标函数最大化,就可以做到这一点。给出的数值结果表明了该想法的可能应用。七个相同的偶极子λ/ 2的阵列提供了示意图,平均3 dB波束宽度等于63°。获得了低于-3 dB的相对旁瓣电平。在不同频率下的仿真证明,这里设计的阵列是一个窄带阵列,其带宽为载波频率的2.5%。

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