Performance analysis of polarization diversity for frequency-selective Nakagami-m fading

Z. Ahmad, M. Moinuddin, Taimoor Altaf, Arslan Khalid
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引用次数: 2

Abstract

Polarization Diversity (PD) is a favorable option for compact Base Station (BS) and Mobile Station (MS) antennas while offering the benefits of Space Diversity (SD) for wireless systems. The large bandwidth of future networks is more likely to cause frequency-selective fading yet compactness is desired irrespective of terrain. Therefore, in this paper, performance of PD for flat-fading and frequency-selective fading is investigated based on the Symbol Error Rate (SER) with emphasis on frequency-selective fading. Nakagami-m fading is employed as it can represent a wide range of multipath channels raging from line-of-sight (LoS) to non-line-of-sight (nLoS). SER of PD and SD are compared based on SNR. The dependence of SER of flat as well as frequency-selective fading on SNR, PD factors and fading parameter m is presented. SER of frequency-selective Rayleigh and Rician fading is also compared in this work.
频率选择性中川衰落极化分集性能分析
极化分集(PD)是紧凑型基站(BS)和移动站(MS)天线的有利选择,同时为无线系统提供空间分集(SD)的优势。未来网络的大带宽更有可能导致频率选择性衰落,但无论地形如何,都需要紧凑性。因此,本文重点研究了基于符号误码率(SER)的PD在平坦衰落和频率选择衰落中的性能,并着重研究了频率选择衰落。Nakagami-m衰落被采用,因为它可以表示从视距(LoS)到非视距(nLoS)的大范围多径信道。基于信噪比对PD和SD的SER进行了比较。给出了平坦衰落和频率选择性衰落的SER与信噪比、PD因子和衰落参数m的关系。并对频率选择性瑞利衰落和瑞利衰落的SER进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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