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Performance of preprocessing-aided relay-assisted uplink communication

机译:预处理辅助中继辅助上行链路通信的性能

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In this paper, we study the performance of cooperative diversity aided uplink (UL) communications with fixed infrastructure based decode and forward (DF) relays each equipped with multiple antennas. Source mobile stations (MSs) exploit these infrastructure based relays to communicate with the base station (BS). The links D and T connecting the source MS to the BS and the source MS to the relays, respectively are assumed to be frequency non-selective and the link R from the relays to the BS is assumed to experience Nakagami-m fading. Specifically, in this paper, we investigate the performance of cooperative diversity in the context of UL communications with singular value decomposition (SVD) based transmitter preprocessing (TP) at the relays to mitigate multi-user interference (MUI) at the BS for two cases, (i) the relays are far away from each other so that MUI at the relays is negligible and (ii) the relays are closer to each other so that MUI is dominant. Our simulation studies show that this TP aided relay diversity system performs well in multi-user interference limited environment by completely eliminating the uplink MUI. Moreover, this approach results in better achievable bit error rate (BER) than conventional cooperative diversity system employing multiuser detection (MUD).
机译:在本文中,我们研究了基于固定基础结构的解码和前向(DF)中继的协作分集辅助上行链路(UL)通信的性能,每个中继均配备了多个天线。源移动站(MS)利用这些基于基础结构的中继与基站(BS)通信。假设分别将源MS连接到BS以及将源MS连接到中继器的链路D和T是非频率选择性的,并且假定从中继器到BS的链路R经历了Nakagami-m衰落。具体而言,在本文中,我们研究了两种情况下UL通信中基于奇异值分解(SVD)的发射机预处理(TP)来减轻BS处的多用户干扰(MUI)的情况下协作分集的性能。 ,(i)继电器彼此相距较远,以使继电器处的MUI可以忽略不计;(ii)继电器彼此靠近,以MUI为主导。我们的仿真研究表明,这种TP辅助中继分集系统通过完全消除上行链路MUI,在多用户干扰受限的环境中表现良好。此外,与采用多用户检测(MUD)的常规协作分集系统相比,该方法可实现更好的误码率(BER)。

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