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Multipath Multiplexing for Capacity Enhancement in SIMO Wireless Systems

机译:多路径复用以增强SIMO无线系统的容量

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This paper proposes a novel and simple orthogonal faster than Nyquist (OFTN) data transmission and detection approach for a single input multiple output system. It is assumed that the signal having a bandwidth is transmitted through a wireless channel with multipath components. Under this assumption, this paper provides a novel and simple OFTN transmission and symbol-by-symbol detection approach that exploits the multiplexing gain obtained by the multipath characteristic of wideband wireless channels. It is shown that the proposed design can achieve a higher transmission rate than the existing one [i.e., orthogonal frequency division multiplexing (OFDM)]. Furthermore, the achievable rate gap between the proposed approach and that of the OFDM increases as the number of receiver antennas increases for a fixed value of . This implies that the performance gain of the proposed approach can be very significant for a large-scale multi-antenna wireless system. The superiority of the proposed approach is shown theoretically and confirmed via numerical simulations. Specifically, we have found upper-bound average rates of 15 and 28 bps/Hz with the OFDM and proposed approaches, respectively, in a Rayleigh fading channel with 32 receive antennas and signal-to-noise ratio of 15.3 dB. The extension of the proposed approach for different system setups and associated research problems is also discussed.
机译:本文提出了一种新颖且简单的正交比奈奎斯特(OFTN)更快的数据传输和检测方法,用于单输入多输出系统。假设具有带宽的信号是通过具有多径分量的无线信道发送的。在此假设下,本文提供了一种新颖,简单的OFTN传输和逐符号检测方法,该方法利用了宽带无线信道的多径特性获得的复用增益。结果表明,所提出的设计可以实现比现有的更高的传输速率[即,正交频分复用(OFDM)]。此外,对于固定值,随着接收机天线数量的增加,所提出的方法与OFDM的可实现的速率差距也将增大。这意味着所提出的方法的性能增益对​​于大规模多天线无线系统可能非常重要。理论上表明了该方法的优越性,并通过数值模拟得到了证实。具体来说,我们发现,在32个接收天线,信噪比为15.3 dB的瑞利衰落信道中,OFDM和提议的方法分别具有15和28 bps / Hz的上限平均速率。还讨论了针对不同系统设置和相关研究问题而提出的方法的扩展。

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