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Index Modulation Aided Subcarrier Mapping for Dual-Hop OFDM Relaying

机译:用于双跳OFDM中继的索引调制辅助子载波映射

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摘要

There is a recent surge of research interest in the study of performance-enhancing techniques for orthogonal frequency division multiplexing (OFDM)-based relay systems. Among those, subcarrier mapping has been verified to be an effective one for boosting the system capacity and improving the error performance. However, it has to be performed at the relay, which subsequently conveys the subcarrier permutation information to the destination. The existing signaling scheme occupies a portion of subcarriers to this end, leading to a loss of spectral efficiency. In this paper, we propose a novel signaling scheme to eliminate this overhead by transferring the subcarrier permutation to the mode permutation that can be implicitly conveyed without consuming additional spectrum resources. We adopt phase rotation for mode design considering both non-adaptive and adaptive modulation, and illustrate the proposed scheme by taking the dual-hop OFDM relaying with semi-blind amplify-and-forward protocol as an example. An asymptotically tight upper bound on the bit error rate (BER) of the proposed scheme is derived in closed-form over Rayleigh fading channels. BER simulation results validate the analysis and show that the proposed scheme asymptotically approaches the ideal case that assumes perfect knowledge of subcarrier permutation information at the destination and significantly outperforms the existing scheme in the asymptotic signal-to-noise ratio region at the same spectral efficiency.
机译:在基于正交频分复用(OFDM)的中继系统的性能增强技术的研究中,最近有大量的研究兴趣。其中,子载波映射已被证明是一种有效的方法,可以提高系统容量并改善错误性能。但是,它必须在中继站执行,中继站随后将子载波置换信息传送到目的地。为此,现有的信令方案占用一部分子载波,从而导致频谱效率的损失。在本文中,我们提出了一种新颖的信令方案,通过将子载波排列转换为可以隐式传送的模式排列而无需消耗额外的频谱资源,从而消除了这种开销。我们采用相位旋转进行模式设计,同时考虑了非自适应和自适应调制,并以具有半盲放大和转发协议的双跳OFDM中继为例来说明所提出的方案。所提出的方案的误码率(BER)的渐近严格上限是在瑞利衰落信道上以封闭形式导出的。 BER仿真结果验证了分析结果,表明所提出的方案渐近逼近理想情况,该情况假设了对目的地子载波置换信息的完全了解,并且在相同频谱效率下在渐近信噪比区域中明显优于现有方案。

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