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Broad-Band Fragmented Aperture Phased Array Element Design Using Genetic Algorithms

机译:基于遗传算法的宽带碎片孔径相控阵元设计

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摘要

In this paper, a synthesis procedure to design thin broad-band fragmented aperture array elements is described. The arrays are assumed to be infinite periodic and the elements consist of a conducting pattern etched on a dielectric backed by a groundplane. A genetic algorithm (GA) is used to design the conducting pattern, relative permittivity, and thickness of the dielectric substrate with respect to array scan and bandwidth performance. The fitness function in the GA is evaluated using a finite-difference time-domain code with periodic boundary conditions. For a substrate thicker than about 0.1 (lambda)_(L) ((lambda)_(L) velence wavelength at the lowest frequency in the frequency band investigated), it was found that a bandwidth of at least one octave can be obtained for arrays scanned within 45 deg from broadside.
机译:在本文中,描述了设计薄宽带碎片化孔径阵列元件的综合程序。假定阵列是无限周期的,并且这些元件由在接地层支持的电介质上蚀刻的导电图案组成。遗传算法(GA)用于相对于阵列扫描和带宽性能设计介电基板的导电图案,相对介电常数和厚度。 GA中的适应度函数是使用具有周期性边界条件的有限差分时域代码进行评估的。对于厚于约0.1λ_L(在所研究的频带中的最低频率处的λ波长)的基板,发现可以获得至少一个八度的带宽。阵列从宽边扫描45度以内。

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