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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Application of genetic algorithm in M x N reconfigurable antenna array based on RF MEMS switches
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Application of genetic algorithm in M x N reconfigurable antenna array based on RF MEMS switches

机译:基于RF MEMS开关的M×N可重构天线阵列的遗传算法在M个X N

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With the continuous development of the wireless communication, a device needs to integrate multiple antennas, which will lead to increased volume, increased cost, electromagnetic compatibility problems and increased weight. This paper presents a M x N reconfigurable antenna array based on RF MEMS switches. The modeling script of M x N reconfigurable antenna array is written in MATLAB by using MATLAB-HFSS-API. In order to quickly get a switch array with target frequency, genetic algorithm is applied to M x N reconfigurable antenna array. Taking the 3 x 3 reconfigurable antenna array as an example, a switch array with the resonant frequency of 3.81 GHz is searched from its 4096 switch arrays. The switch array found by genetic algorithm is 1 1 0 0 1 0 0 1 1 0 1 0. The resonant frequency and S11 parameter of this switch array is 3.81 GHz and -20.96 dB. The search takes 6.77 h and the efficiency is 17 times of the simulating all switch arrays.
机译:随着无线通信的不断发展,设备需要集成多个天线,这将导致容积增加,增加成本,电磁兼容性问题和增加的重量。 本文介绍了基于RF MEMS开关的M X N可重构天线阵列。 使用MATLAB-HFSS-API在MATLAB中写入M×N可重构天线阵列的建模脚本。 为了快速获取具有目标频率的开关阵列,遗传算法应用于M×N可重新配置的天线阵列。 以3×3可重新配置的天线阵列为例,从其4096开关阵列中搜索具有3.81GHz的谐振频率的开关阵列。 通过遗传算法找到的开关阵列为1 1 0 0 1 0 0 11 0 1 0.此开关阵列的谐振频率和S11参数为3.81GHz和-20.96 dB。 搜索需要6.77小时,效率为模拟所有开关阵列的17倍。

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