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Beam-Pattern Calibration in a Realistic System of Phased-Array Antennas via the Implementation of a Genetic Algorithm With a Measurement System

机译:通过带有测量系统的遗传算法的实现,在现实相控阵天线系统中进行波束图校准

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摘要

This paper presents an effective optimization procedure to calibrate the deviations of beam patterns radiated from phased arrays of antennas. The pattern distortions occur from the discretization of the radio-frequency (RF) components’ output and the residue errors in amplitudes and phases from manufacturing discrepancies. This technique implements a genetic algorithm (GA) with an antenna measurement facility, and allows one to optimize the radiation patterns by using the actual phase and amplitude states of the RF components. The optimization variables are the control codes of the RF components, which are more direct and applicable to the GA as binary codes, rather than the phases and amplitudes of the elemental excitations. The systematic procedure and demonstration examples are presented to validate the feasibility.
机译:本文提出了一种有效的优化程序,以校准从天线相控阵辐射的波束方向图的偏差。图案失真是由射频(RF)组件的输出离散化和制造误差引起的幅度和相位残留误差引起的。该技术通过天线测量工具实现了遗传算法(GA),并允许人们通过使用RF组件的实际相位和幅度状态来优化辐射图。最优化变量是RF组件的控制代码,它比二进制激励更直接,更适用于GA作为二进制代码,而不是相位和幅度。给出了系统的程序和演示实例以验证可行性。

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