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Generalised selection combining diversity performance of multi-element antenna systems via a stochastic electromagnetic-circuit methodology

机译:通过随机电磁电路方法结合多元素天线系统的分集性能的通用选择

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A stochastic electromagnetic-circuit methodology for evaluating the generalised selection combining (GSC) diversity performance of coupled and arbitrarily terminated multi-element antenna (MEA) systems when operating in Rayleigh fading environments is proposed. The methodology is based on the effective length matrix, which connects the incident electric fields to the received voltage and current vectors, and on the newly introduced stochastic generation of realistic propagation environments by means of the angular power density functions and the cross polarisation power ratio of the incoming plane waves. The generated statistical ensemble of voltage and current vectors is then used to determine the receive GSC diversity performance metrics, that is mean effective gain (MEG), envelope correlation coefficient (Pe) and effective diversity gain (EDG). Two compact MEA configurations comprising two and four printed inverted F antennas (IFA) operating in a uniform propagation scenario at the 5.2 GHz band are investigated under various GSC schemes, which include the selection (SC) and the maximal ratio (MRC) as special cases. The simulated values of MEG, Pe and EDG under the MRC scheme are in excellent agreement to those obtained from wellestablished closed-form methodologies.
机译:提出了一种随机电磁电路方法,用于评估在瑞利衰落环境中工作时耦合和任意端接的多元素天线(MEA)系统的广义选择组合(GSC)分集性能。该方法基于有效长度矩阵,该矩阵将入射电场连接到接收到的电压和电流矢量,并且基于新引入的通过角度功率密度函数和交叉极化功率比实现的实际传播环境的随机生成。传入的飞机波。然后,将所生成的电压和电流矢量的统计集合用于确定接收GSC分集性能指标,即平均有效增益(MEG),包络相关系数(Pe)和有效分集增益(EDG)。在各种GSC方案下研究了两种紧凑的MEA配置,其中包括两个和四个印刷反向F天线(IFA),它们在5.2 GHz频带上以均匀传播场景工作,其中包括特殊情况下的选择(SC)和最大比(MRC) 。在MRC方案下,MEG,Pe和EDG的模拟值与从完善的封闭式方法学获得的值非常一致。

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