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首页> 外文期刊>International journal of antennas and propagation >Hybrid Differential Evolution with Biogeography-Based Optimization for Design of a Reconfigurable Antenna Array with Discrete Phase Shifters
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Hybrid Differential Evolution with Biogeography-Based Optimization for Design of a Reconfigurable Antenna Array with Discrete Phase Shifters

机译:混合差分进化与基于生物地理学的优化,用于离散相移可重构天线阵列的设计

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摘要

Multibeam antenna arrays have important applications in communications and radar. This paper presents a new method of designing a reconfigurable antenna with quantized phase excitations using a new hybrid algorithm, called DE/BBO. The reconfigurable design problem is to find the element excitation that will result in a sector pattern main beam with low sidelobes with additional requirement that the same excitation amplitudes applied to the array with zero-phase should be in a high directivity, low sidelobe pencil-shaped main beam. In order to reduce the effect of mutual coupling between the antenna-array elements, the dynamic range ratio is minimized. Additionally, compared with the continuous realization and subsequent quantization, experimental results indicate that the performance of the discrete realization of the phase excitation value can be improved. In order to test the performances of hybrid differential evolution with biogeography-based optimization, the results of some state-of-art algorithms are considered, for the purposed of comparison. Experiment results indicate the better performance of the DE/BBO.
机译:多波束天线阵列在通信和雷达中具有重要的应用。本文提出了一种使用称为DE / BBO的新型混合算法设计具有量化相位激励的可重构天线的新方法。可重构设计的问题是找到将导致扇形主波束具有低旁瓣的元素激励,并附加要求应用于零相位阵列的相同激励幅度应为高方向性,低旁瓣的铅笔形主梁。为了减小天线阵列元件之间的相互耦合的影响,将动态范围比最小化。另外,与连续实现和随后的量化相比,实验结果表明,可以提高相位激励值的离散实现的性能。为了通过基于生物地理的优化来测试混合差分进化的性能,出于比较的目的,考虑了一些最新算法的结果。实验结果表明DE / BBO的性能更好。

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