首页> 外文期刊>Metrology and Measurement Systems: Metrologia i Systemy Pomiarowe >SUPPRESSING SIDE-LOBES OF LINEAR PHASED ARRAY OF MICRO-STRIP ANTENNAS WITH SIMULATION-BASED OPTIMIZATION
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SUPPRESSING SIDE-LOBES OF LINEAR PHASED ARRAY OF MICRO-STRIP ANTENNAS WITH SIMULATION-BASED OPTIMIZATION

机译:基于模拟的优化抑制微带天线的线性相控阵旁瓣

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摘要

A simulation-based optimization approach to design of phase excitation tapers for linear phased antenna arrays is presented. The design optimization process is accelerated by means of Surrogate-Based Optimization (SBO); it uses a coarse-mesh surrogate of the array element for adjusting the array's active reflection coefficient responses and a fast surrogate of the antenna array radiation pattern. The primary optimization objective is to minimize side-lobes in the principal plane of the radiation pattern while scanning the main beam. The optimization outcome is a set of element phase excitation tapers versus the scan angle. The design objectives are evaluated at the high fidelity level of description using simulations of the discrete electromagnetic model of the entire array so that the effects of element coupling and other possible interaction within the array structure are accounted for. At the same time, the optimization process is fast due to SBO. Performance and numerical cost of the approach are demonstrated by optimizing a 16-element linear array of microstrip antennas. Experimental verification has been carried out for a manufactured prototype of the optimized array. It demonstrates good agreement between the radiation patterns obtained from simulations and from physical measurements (the latter constructed through superposition of the measured element patterns). (C) 2016 Polish Academy of Sciences. All rights reserved
机译:提出了一种基于仿真的优化方法,用于设计线性相控天线阵列的相位激励锥度。通过基于代理的优化(SBO)可以加速设计优化过程;它使用阵列元素的粗网格替代物来调整阵列的有效反射系数响应,并使用快速替代天线阵列辐射图。最主要的优化目标是在扫描远光时最小化辐射图主平面中的旁瓣。优化结果是一组元素相位激励锥度与扫描角度的关系。使用整个阵列的离散电磁模型的仿真,以高逼真度的描述水平评估设计目标,从而考虑到元件耦合和阵列结构内其他可能相互作用的影响。同时,由于SBO,优化过程很快。通过优化微带天线的16个元素的线性阵列,证明了该方法的性能和数值成本。已针对优化阵列的制造原型进行了实验验证。它证明了通过仿真获得的辐射图与通过物理测量(通过叠加被测元素图构建的辐射图)之间的良好一致性。 (C)2016波兰科学院。版权所有

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