Performance improvement of decode-and-forward relay systems using dual polarized antenna

M. Ilic-Delibasic, M. Pejanović-Djurišić
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引用次数: 1

Abstract

This paper studies performance of two-hop decode-and-forward (DF) relay system with the implemented polarization receive diversity system at the destination terminal. Communication between the source and the relay is assumed to be over the Ricean fading channel, while two correlated and non-identical Ricean fading channels are assumed for the relay to destination link. Maximal ratio combining (MRC) of the received signals is performed at the destination, and no direct communication between the source and the destination is considered. In order to determine the level of improvement introduced through the implementation of polarization diversity, performances of the considered system are compared with the standard DF relay system with single antenna terminals. The obtained results show that, using polarization diversity, the same BER (Bit Error Rate) values can be obtained with significantly lower SNR (Signal to Noise Ratio), despite a certain level of correlation and power unbalance between the diversity branches. In that manner, compared to the system with no diversity, the total needed transmit power for achieving the same level of system performances is reduced, and thus more energy efficient communication is enabled.
双极化天线对译码转发中继系统性能的改进
本文研究了在目的端实现极化接收分集系统的两跳译码转发(DF)中继系统性能。假设源和中继之间的通信是在一个Ricean衰落信道上进行的,而中继到目的链路则假设有两个相关且不相同的Ricean衰落信道。在目的端对接收到的信号进行最大比合并(MRC),不考虑源端与目的端直接通信。为了确定通过实现极化分集所带来的改进水平,将所考虑的系统的性能与单天线终端的标准DF中继系统进行了比较。结果表明,尽管分集支路之间存在一定程度的相关性和功率不平衡,但使用极化分集可以在较低信噪比的情况下获得相同的误码率。通过这种方式,与没有分集的系统相比,实现相同系统性能水平所需的总发射功率降低了,从而实现了更节能的通信。
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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