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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Efficiency-Constrained Particle Swarm Optimization of a Modified Bernstein Polynomial for Conformal Array Excitation Amplitude Synthesis
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Efficiency-Constrained Particle Swarm Optimization of a Modified Bernstein Polynomial for Conformal Array Excitation Amplitude Synthesis

机译:保形阵列激励幅度合成的修正Bernstein多项式的效率约束粒子群优化

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As various enabling technologies advance, conformal phased arrays are finding more numerous applications. Because a conformal array is curved, new far field pattern behaviors emerge and many of the traditional linear and planar phased array synthesis methods are not valid. This paper starts by reviewing the equations for the far field of a curved phased array, and provides a generalized definition of aperture efficiency appropriate for conformal arrays. A modified Bernstein polynomial, defined with just five parameters, is introduced which provides a flexible method to specify a variety of smooth unimodal amplitude distributions that are shown to give good sidelobe levels and aperture efficiencies. By using particle swarm optimization of the modified Bernstein polynomial parameters constrained to provide a specified aperture efficiency, a family of aperture distributions and corresponding far field patterns is produced that allows aperture efficiency to be traded for sidelobe level.
机译:随着各种使能技术的发展,保形相控阵列正在发现更多的应用。由于共形阵列是弯曲的,因此出现了新的远场模式行为,并且许多传统的线性和平面相控阵合成方法无效。本文首先回顾了弯曲相控阵的远场方程,并提供了适用于共形阵列的孔径效率的广义定义。引入了仅由五个参数定义的修改后的伯恩斯坦多项式,它提供了一种灵活的方法来指定各种平滑的单峰幅度分布,这些分布可提供良好的旁瓣电平和孔径效率。通过使用约束为提供特定光圈效率的修改后的伯恩斯坦多项式参数的粒子群优化,可以产生一系列的光圈分布和相应的远场模式,从而可以将光圈效率换成旁瓣水平。

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