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Evolutional Design of Waveguide Slot Antenna With Dielectric Lenses

机译:介电透镜波导缝隙天线的演化设计

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This paper reports novel design method of waveguide slot array antenna with dielectric lenses by using the evolutionary optimization. We adopt the micro-genetic algorithm (MGA) with the real-coded gene as the optimization method and the finite-difference time-domain (FDTD) method to evaluate the objective function. The purpose of this study is to establish the design method of the above antenna by optimizing slot length and offset parameters. In the optimization of the antenna aperture distribution, it is shown that the optimized aperture field becomes sufficiently uniform, and the side-lobe levels (SLL) are improved in comparison with those of conventional antennas. Another optimization in which the objective function is evaluated by the array factor controls directly the side-lobe levels, to design low side-lobe antennas. By using the proposed method, the target antenna is optimized to satisfy the given SLL. It is confirmed that the proposed design method is a promising tool for designing the antennas loaded with dielectric materials.
机译:本文采用进化优化方法,提出了一种新型的介电透镜波导缝隙阵列天线设计方法。我们采用带有实编码基因的微遗传算法(MGA)作为优化方法,并采用时域有限差分(FDTD)方法评估目标函数。本研究的目的是通过优化缝隙长度和偏移参数来建立上述天线的设计方法。在天线孔径分布的优化中,示出了优化的孔径场变得足够均匀,并且与传统天线相比,旁瓣电平(SLL)得到了改善。通过阵列因子评估目标函数的另一种优化方法是直接控制旁瓣电平,以设计低旁瓣天线。通过使用所提出的方法,优化目标天线以满足给定的SLL。可以肯定的是,所提出的设计方法是用于设计装有介电材料的天线的有前途的工具。

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