Performance enhancement for co-channel interference cancellation with smart antenna and power adaptive in cooperative communication

Wuttipan Duangsri, M. Somrobru, N. Sutthisangiam
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引用次数: 2

Abstract

Co-channel interference cancellation method are investigated for cooperative communication employing a decode-and-forward protocol when the base station is disturbed by the co-channel interference (CCI). In order to solve such interference problem, the beamforming method with the appropriate weight estimation for a smart antenna at the base station will be employed. We can also control the transmitted power at the interfering source, and maintain nearly a full diversity gain compared with the existing decode-and-forward cooperative communication. The network performance can be enhanced by the proposed power adaptive at the interference source by the quality of channel criterion and signal combining method. The maximum ratio combining (MRC) and the cooperative maximum ration combining (C-MRC) are used to combine the received signals arrived at the base station to achieve the minimum probability of error based on the experimental results from simulations. The results show proposed method in C-MRC systems had the lower probability of error than MRC because the effect of three gain factors: the antenna array gain obtained from the beamforming algorithm, the power gain of the proposed power adaptive strategy, and the diversity gain obtained from a signal combining of received signals from the relay.
协同通信中基于智能天线和功率自适应的同信道干扰消除性能增强
研究了当基站受到同信道干扰时,采用译码转发协议的协同通信同信道干扰消除方法。为了解决这类干扰问题,将采用针对基站智能天线进行适当权值估计的波束形成方法。我们还可以在干扰源处控制发射功率,与现有的译码转发合作通信相比,可以保持几乎完全的分集增益。通过信道质量准则和信号合并方法,在干扰源处进行功率自适应,提高了网络性能。根据仿真实验结果,采用最大比组合(MRC)和合作最大比组合(C-MRC)对到达基站的接收信号进行组合,使误差概率最小。结果表明,在C-MRC系统中,由于波束形成算法获得的天线阵列增益、功率自适应策略获得的功率增益以及中继接收信号组合获得的分集增益三个增益因素的影响,该方法的误差概率比MRC低。
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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