A cognitive two-way relay transmission scheme based on adaptive QAM and wireless network coding

Ke Ke, Yixi Xie, Yongjie Liu, Chao Hua
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引用次数: 3

Abstract

In this paper, we investigate a cognitive radio network design for the Two-way Relay (TWR) Channel, relying on the combination of Adaptive Quadrature amplitude modulation (AQAM) and network coding technique. More explicitly, we extend the AQAM in peer-to-peer transmission scenario to the downlink design of Decode-and-Forward Two-way Relaying (DF-TWR) scenario. On the basis of the bit-error-ratio (BER) bounds, joint power and rate adaptive QAM with network coding scheme is proposed for the purpose of improving the throughput of the relaying system. In addition, Network-coded-aided QAM suffers a modest SNR loss due to the direct current (DC) bias, which will be derived in detail in this paper. Simulation results indicate that our proposed adaptive Network-coded-aided QAM scheme hold the potential of improving the throughput of TWR network, compared to the scheme without adaptation.
一种基于自适应QAM和无线网络编码的认知双向中继传输方案
本文研究了一种基于自适应正交调幅(AQAM)和网络编码技术相结合的双向中继(TWR)信道认知无线网络设计。更明确地,我们将点对点传输场景中的AQAM扩展到解码转发双向中继(DF-TWR)场景的下行链路设计。为了提高中继系统的吞吐量,在误码率边界的基础上,提出了带网络编码的联合功率和速率自适应QAM方案。此外,由于直流偏置,网络编码辅助QAM遭受适度的信噪比损失,这将在本文中详细推导。仿真结果表明,与不自适应的方案相比,本文提出的自适应网络编码辅助QAM方案具有提高TWR网络吞吐量的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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