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A two-hop equalize-and-forward relay scheme in OFDM-based wireless networks over multipath channels

机译:多路径信道上基于OFDM的无线网络中的两跳均衡转发中继方案

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摘要

Relay communications have attracted increasing research attentions as a cost-effective technique to improve spatial diversity, service coverage, and energy efficiency in wireless networks. However, existing relay schemes (e.g., amplify-and-forward and decode-and-forward (DF) schemes) still face several major challenges, particularly the accumulation of multipath channels effect in AF and long processing latency in DF. To address these issues, we propose a novel equalize-and-forward (EF) relay scheme to enhance the retransmission reliability while maintaining low processing delay at the relay node. In particular, the proposed EF relay estimates and equalizes the channel between source and relay to eliminate the channel accumulation effect without signal regeneration. To further reduce the relay processing time, the channel estimation and equalization in the proposed EF design are performed in parallel. The proposed equalization is realized by presetting the equalizer coefficients with the current channel response that is predicted in parallel using multiple past channel responses. Numerical results show that the proposed EF relay scheme can achieve comparable symbol error rate performance as the DF relay with much less relay latency. In addition, the EF relay exhibits low outage probability at the same data rate as compared with traditional amplify-and-forward and DF schemes. schemes. Copyright (c) 2015 John Wiley & Sons, Ltd
机译:中继通信作为一种提高无线网络中空间分集,服务覆盖范围和能源效率的经济有效的技术,已引起越来越多的研究关注。但是,现有的中继方案(例如,放大转发和解码转发(DF)方案)仍然面临几个主要挑战,特别是AF中多径信道的累积和DF中长处理延迟的影响。为了解决这些问题,我们提出了一种新颖的均衡转发(EF)中继方案,以提高重传可靠性,同时在中继节点上保持较低的处理延迟。特别地,所提出的EF中继器估计并均衡源与中继器之间的信道,以消除信道累积效应而无需信号再生。为了进一步减少中继处理时间,并行执行了提出的EF设计中的信道估计和均衡。通过使用当前信道响应预置均衡系数来实现建议的均衡,该当前信道响应是使用多个过去信道响应并行预测的。数值结果表明,所提出的EF中继方案可以实现与DF中继相当的符号误码率性能,而中继等待时间要短得多。此外,与传统的放大转发和DF方案相比,EF中继在相同的数据速率下具有较低的中断概率。计划。版权所有(c)2015 John Wiley&Sons,Ltd

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