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Impact of Mutual Coupling and Polarization of Antennas on BER Performances of Spatial Multiplexing MIMO Systems

机译:天线相互耦合和极化对空间复用MIMO系统的性能的影响

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摘要

This paper is aimed at studying the impacts of mutual coupling, matching networks, and polarization of antennas on performances of Multiple-Input Multiple-Output (MIMO) systems employing Spatial Multiplexing (SM). In particular, the uncoded average Bit Error Rate (BER) of MIMO systems is investigated. An accurate signal analysis framework based on circuit network parameters is presented to describe the transmit/receive characteristics of the matched/unmatched antenna array. The studied arrays consist of matched/unmatched compact copolarization and polarization diversity antenna array. Monte-Carlo numerical simulations are used to study the BER performances of the SM MIMO systems using maximum-likelihood and/or zero-forcing detection schemes. The simulation results demonstrate that the use of matching networks can improve the BER performance of SM MIMO systems significantly, and the BER performance deterioration due to antenna orientation randomness can be compensated by use of polarization diversity antenna arrays.
机译:本文旨在研究互联耦合,匹配网络和天线极化对采用空间多路复用(SM)的多输入多输出(MIMO)系统的性能的影响。特别地,研究了MIMO系统的未编码的平均误码率(BER)。提出了一种基于电路网络参数的精确信号分析框架来描述匹配/无匹配天线阵列的发射/接收特性。所研究的阵列包括匹配/无与伦比的紧凑型基极化和偏振分集天线阵列。 Monte-Carlo数值模拟用于使用最大似然和/或零强制检测方案研究SM MIMO系统的BER表演。仿真结果表明,匹配网络的使用可以显着提高SM MIMO系统的BER性能,并且可以通过使用偏振分集天线阵列来补偿天线方向随机性引起的BER性能劣化。

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