Achievable Sum-Rate Maximizing AF Relay Beamforming Scheme in Two-Way Relay Channels

N. Lee, Hyun Jong Yang, J. Chun
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引用次数: 90

Abstract

This paper deals with design of a amplify-and- forward (AF) relay beamforming matrix in a two-way relay protocol when a relay node has multiple antennas. Two-way relaying is a promising protocol since it provides enhanced spectral efficiency compared to one-way relaying protocols. In this paper we derive the achievable sum-rate upper bound of AF beamforming scheme and propose the achievable sum-rate maximizing relay beamforming scheme when the destination and the relay node have perfect knowledge of the channel state information (CSI) for forward and backward channels. The solution of the sum-rate maximizing scheme is obtained by using the proposed algorithm, general power iterative algorithm, which solves a global optimization problem efficiently. Comparing with one-way relaying protocol, the improved sum-rate performance of the proposed scheme is verified by numerical simulation.
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双向中继信道中可实现的和速率最大化AF中继波束形成方案
本文研究了双向中继协议中中继节点具有多天线时的放大转发中继波束形成矩阵的设计。双向中继是一种很有前途的协议,因为与单向中继协议相比,它提供了更高的频谱效率。本文推导了AF波束形成方案的可实现和速率上界,并提出了当目标和中继节点对前向和后向信道的信道状态信息(CSI)完全了解时可实现和速率最大化的中继波束形成方案。利用所提出的算法——一般幂次迭代算法,得到了求和速率最大化方案的解,有效地解决了全局优化问题。通过与单向中继协议的比较,通过数值仿真验证了该方案提高的和速率性能。
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