On the asymptotic performance of multiuser opportunistic df cooperative systems over frequency selective fading channels using MMSE SC-FDE

Saed Daoud, A. Ghrayeb
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Abstract

In this paper, the asymptotic performance of multiuser opportunistic cooperative system over frequency selective fading channels is investigated. Specifically, we consider a system comprising multiple sources, multiple relays with best relay selection, and a single destination. At the selected relay, a decode-and-forward (DF) relaying with a combining scheme is employed to enhance the bandwidth efficiency. Minimum mean squared error (MMSE) single carrier frequency domain equalization (SC-FDE) is assumed at the receivers (the relays and the destination). For this system, we invoke the matched filter bound (MFB) to derive the asymptotic outage probability with the aim of revealing the maximum diversity order that can be achieved by such systems. We use this bound to derive a limit on the code rate that the transmitters should use to be able to achieve the maximum diversity possible for a given number of sources using MMSE SC-FDE. We provide numerical examples that validate the analytical results.
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基于MMSE SC-FDE的多用户机会df合作系统在频率选择衰落信道上的渐近性能研究
研究了多用户机会合作系统在频率选择衰落信道上的渐近性能。具体地说,我们考虑一个系统包括多个源、多个中继与最佳中继选择,和一个单一的目的地。在所选中继上,采用译码转发(DF)中继与组合方案,提高了带宽效率。最小均方误差(MMSE)单载波频域均衡(SC-FDE)在接收机(继电器和目的地)被假设。对于该系统,我们调用匹配滤波器界(MFB)来推导渐近中断概率,目的是揭示该系统可以达到的最大分集阶数。我们使用这个界限来推导发射机应该使用的码率限制,以便能够使用MMSE SC-FDE实现给定数量的源的最大分集。给出了数值算例,验证了分析结果。
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