On the Wireless Powered Buffer-Aided Relay Communication with Imperfect CSI

Shihong Ni, Tianheng Wang, Shuo Wang, Qingchun Chen
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Abstract

In this paper, we consider a practical wireless powered buffer-aided relay network, where one relay collects energy from source to assist its data delivery to one remote destination node in the presence of channel estimate error (CEE). The relay is assumed to be provisioned with data buffer and energy storage to store data and the collected energy from source. The stochastic channel estimate error model with realistic estimation variance is employed to characterize the influence of the practical channel estimate error. The throughput maximization problem was formulated to derive the practical buffer-aided relaying scheme with imperfect channel state information (CSI). Our analysis unveils that, by explicitly taking CEE into account, buffer-aided relaying scheme still outperforms the non-buffer-aided relay counterpart with ideal CSI assumption. The notable advantages in terms of the realized end-to-end throughput performance and the robustness against the CEE confirm us that, buffer-aided adaptive relaying design provides us a feasible wireless relaying scheme that can be deployed in practical applications.
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不完全CSI下的无线供电缓冲辅助中继通信
在本文中,我们考虑了一个实用的无线供电缓冲辅助中继网络,其中一个中继在存在信道估计误差(CEE)的情况下从源收集能量以协助其数据传输到一个远程目标节点。假定继电器设有数据缓冲器和能量存储器,用于存储数据和从源收集的能量。采用具有实际估计方差的随机信道估计误差模型来表征实际信道估计误差的影响。提出吞吐量最大化问题,推导出具有不完全信道状态信息的实用缓冲辅助中继方案。我们的分析表明,通过明确考虑CEE,缓冲辅助继电器方案在理想的CSI假设下仍然优于非缓冲辅助继电器方案。在实现的端到端吞吐量性能和对CEE的鲁棒性方面的显着优势证实,缓冲辅助自适应中继设计为我们提供了一种可行的无线中继方案,可以在实际应用中部署。
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