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Faster-Than-Nyquist Signaling With Index Modulation

机译:索引调制比奈奎斯特快

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摘要

In this letter, we propose a novel faster-than-Nyquist (FTN) transmission scheme relying on the time-domain single-carrier index-modulation (IM) concept. In the proposed FTN with IM (FTN-IM) transmitter, a subset of time-domain FTN symbols are activated, where the combination of the activated symbols conveys additional information further to the classic amplitude phase shift keying. Owing to the explicit benefit of sparse FTN-IM signaling, the FTN-specific inter-symbol interference is mitigated in an effective manner, hence attaining a higher spectral efficiency than the conventional FTN counterpart. Furthermore, a low-complexity noise-whitening frequency-domain equalization is developed for our FTN-IM receiver. In order to demonstrate the performance advantage of the proposed FTN-IM scheme over the conventional FTN counterpart, we show that a minimum Euclidean distance of proposed FTN-IM signaling is higher than that of the conventional FTN signaling, while providing their numerical performance comparisons in terms of error rates.
机译:在这封信中,我们提出了一种基于时域单载波索引调制(IM)概念的新颖的比奈奎斯特(FTN)更快的传输方案。在提出的带有IM的FTN(FTN-IM)发送器中,激活了时域FTN符号的子集,其中已激活符号的组合进一步向经典幅度相移键控传递了附加信息。由于稀疏FTN-IM信令的显着优势,以有效的方式减轻了FTN特定的符号间干扰,因此获得了比常规FTN同行更高的频谱效率。此外,为我们的FTN-IM接收机开发了一种低复杂度的噪声白化频域均衡器。为了证明所提出的FTN-IM方案相对于常规FTN对应方案的性能优势,我们证明了所提出的FTN-IM信令的最小欧几里得距离高于常规FTN信令的最小欧氏距离,同时提供了它们的数值性能比较。错误率的条款。

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