JOURNAL ARTICLE

Denoise-and-Forward Network Coding for Two-Way Relay MIMO Systems

Zhongyuan ZhaoMugen PengZhiguo DingWenbo WangHsiao‐Hwa Chen

Year: 2013 Journal:   IEEE Transactions on Vehicular Technology Vol: 63 (2)Pages: 775-788   Publisher: Institute of Electrical and Electronics Engineers

Abstract

In this paper, we propose a denoise-and-forward network coding (DNF-NC) transmission scheme for its applications in two-way relay multiple-input and multiple-output (MIMO) systems. We first consider a scenario with a single pair of source nodes, and minimum mean square error (MMSE) receiver is applied at each node. The global optimal precoding design based on the mean square error (MSE) criterion can be achieved by solving two independent convex optimization problems. To achieve a better tradeoff between performance and complexity, an alternative power optimization approach is proposed using a channel diagonalization technique. Then, we proceed to considering a more challenging bidirectional communication scenario with multiple pairs of source nodes. With intrapair coordination at the sources, we modify DNF-NC by employing a signal alignment technique to combat interpair interference. The numerical results demonstrate that the proposed DNF-NC schemes can significantly improve bit error rate (BER) performance in both two scenarios, and such performance gains can be achieved with relatively low computational complexity.

Keywords:
Precoding MIMO Relay Linear network coding Minimum mean square error Computer science Computational complexity theory Bit error rate Mean squared error Node (physics) Convex optimization Transmission (telecommunications) Algorithm Optimization problem Relay channel Channel (broadcasting) Decoding methods Mathematics Power (physics) Regular polygon Telecommunications Engineering Computer network

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35
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7.24
FWCI (Field Weighted Citation Impact)
31
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0.97
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Citation History

Topics

Cooperative Communication and Network Coding
Physical Sciences →  Computer Science →  Computer Networks and Communications
Full-Duplex Wireless Communications
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advanced Wireless Communication Technologies
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
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