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BER Analysis in Relay-Based DF Cooperative Diversity Systems Over Rayleigh Fading Channels with Non-Identical Interferers Near the Destination

机译:目的地附近具有非相同干扰源的瑞利衰落信道上基于中继的DF合作分集系统中的BER分析

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摘要

A considerable amount of attention has been drawn by Adaptive relaying schemes of cooperative diversity networks. This attention has been garnered because of the efficient way in which allocation of channel resources is implemented in these networks. In cooperative networks, the incremental relaying gets use of feedback channels from a certain destination. The major reasoning of doing this is basically for utilizing the relay at the case where when the immediate way (direct path) from source to goal is in blackout (outage). As a result, two received signals, of course at the destination side, will be certainly combined utilizing the Maximum Ratio Combiner (MRC) which typically prompts to enhancing the reception of the signal. In this article, a closed formula which concerns about the Bit Error Rate (BER) is derived considering incremental relaying uses Decode-and-Forward and Rayleigh fading channels. It likewise contemplates the impacts of various L non-indistinguishable interferers close to the destination. These impacts corrupt the performance of the system because of the existence of the Cochannel obstruction or interference. Analytical results are exhibited to integrate the assumptions.
机译:合作分集网络的自适应中继方案已经引起了相当多的关注。由于在这些网络中实现信道资源分配的有效方式而引起了人们的关注。在协作网络中,增量中继利用了来自特定目的地的反馈通道。这样做的主要理由基本上是在从源到目标的直接路径(直接路径)处于停电(中断)的情况下利用中继。结果,当然在目的地侧的两个接收到的信号肯定会利用最大比率合并器(MRC)进行合并,该合并通常会提示增强信号的接收。在本文中,考虑到增量中继使用解码转发和瑞利衰落信道,得出了一个有关误码率(BER)的封闭公式。它同样考虑了各种L不可区分的靠近目标的干扰源的影响。由于同信道阻塞或干扰的存在,这些影响会破坏系统的性能。展示了分析结果以整合假设。

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