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Sidelobe level reduction in linear antenna array synthesis using Cuckoo Search Accelerated Particle Swarm algorithms

机译:使用杜鹃搜索和加速粒子群算法降低线性天线阵列合成中的旁瓣电平

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摘要

Array pattern synthesis is one of the most important problems in communication and radar applications. The synthesis is usually carried out by controlling amplitude and phase levels (or) element spacing functions of the array. Although, uniform linear arrays cost effective in terms of sources it is not preferred due to high presence of high first side lobe levels. For point to the point communications, and high angular resolutions radars, it is essential to generate low side lobe narrow beams. In view of these facts, a linear array is considered in the present work and it is optimally designed using CSA & APSO algorithms. The desired amplitude levels are evaluated using the algorithm with element spacing d=0.50. The main objective of this work is to minimize the sidelobe level with a constraint on beam width.
机译:阵列模式合成是通信和雷达应用中最重要的问题之一。通常通过控制阵列的幅度和相位水平(或)元素间距函数来执行合成。尽管均匀的线性阵列在光源方面具有成本效益,但是由于高的第一旁瓣电平的高存在而并非优选。对于点对点通信和高角度分辨率雷达,必须生成低旁瓣窄波束。鉴于这些事实,在本工作中考虑了线性阵列,并使用CSA和APSO算法对其进行了优化设计。使用元素间距为d = 0.50的算法评估所需的振幅水平。这项工作的主要目的是在限制波束宽度的情况下最小化旁瓣电平。

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