A novel technique based on modified genetic algorithm for the synthesis of thinned planar antenna array with low peak side lobe level over desired scan volume

J. M., K. K. Suman, V. S. Gangwar, A.K. Singh, S.P. Singh
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引用次数: 8

Abstract

In this paper, a novel algorithm is devised to reduce the peak side lobe level (PSLL) of the thinned planar antenna (TPA) array at antenna boresight as well as over the desired scan volume without occurrence of grating lobes when the beam is electronically scanned away from the boresight. Randomized symmetrical thinning is incorporated in the proposed algorithm to find the best combination of 'ON' and 'OFF' elements. Modified binary coded genetic algorithm (MBC-GA) is employed in the present study to solve this optimization problem. A 12×12-element TPA array is numerically examined to access the performance of proposed method. Results obtained through this study show that array under consideration renders maximum possible reduction in PSLL and also demonstrate the absence of grating lobes when the beam is scanned to 20 deg. and 40 deg. away from the boresight.
一种基于改进遗传算法的低峰值旁瓣薄平面天线阵列合成新技术
本文设计了一种新的算法来降低薄平面天线(TPA)阵列在天线轴视处的峰值旁瓣电平(PSLL),并使波束在远离轴视处进行电子扫描时不产生光栅瓣。在算法中引入随机对称细化,以找到“ON”和“OFF”元素的最佳组合。本文采用改进的二进制编码遗传算法(MBC-GA)来解决这一优化问题。对12×12-element TPA阵列进行了数值测试,以验证所提出方法的性能。研究结果表明,所考虑的阵列可以最大限度地降低psl,并且当光束扫描到距轴视角20度和40度时,也没有光栅瓣。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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