Discrete fourier transform spread zero word OFDM

Mahyar Nemati, Hengameh Takshi, H. Arslan
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引用次数: 2

Abstract

Fifth generation (5G) waveform must meet a superior performance in multipath channels along with low peak to average power ratio (PAPR), especially in up-link transmission. Among waveform candidates, zero tail (ZT) DFT-spread (s) OFDM has low PAPR. However, unlike its name, ZT-DFT-s-OFDM contains non-zero samples at its tails causing inter-symbol interference (ISI) in multipath channels. In this paper, we utilize redundant subcarriers concept in unique word (UW) OFDM to nullify the tail of ZT DFT-s-OFDM. The achieved waveform called “DFT Spread (s) Zero Word (ZW) OFDM” benefits from high mitigation in the ISI compared to ZT DFT-s-OFDM. The remaining benefits in this approach include: (I) around 3 dB performance improvement in Bit Error Rate (BER) compared to cyclic prefix (CP)-OFDM in time dispersive channels, (II) around 0.7 dB lower PAPR compared to CP-OFDM and UW OFDM, (III) having a flexible guard interval length in IFFT output intrinsically. In order to support above claims, simulation results are provided which depict the accuracy and enhanced performance of the proposed waveform compared to the mentioned waveform candidates.
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离散傅立叶变换传播零字OFDM
第五代(5G)波形必须在多径信道中具有优异的性能,同时具有较低的峰值平均功率比(PAPR),特别是在上行链路传输中。在候选波形中,零尾(ZT) DFT-spread (s) OFDM具有较低的PAPR。然而,与它的名字不同,ZT-DFT-s-OFDM在其尾部包含非零采样,导致多径信道中的符号间干扰(ISI)。本文利用UW OFDM中冗余子载波的概念来消除ZT DFT-s-OFDM的尾部。与ZT DFT-s-OFDM相比,实现的波形称为“DFT扩展(s)零字(ZW) OFDM”,受益于ISI的高缓解。这种方法的其他好处包括:(1)在时间色散信道中,与循环前缀(CP)-OFDM相比,误码率(BER)的性能提高了约3 dB;(2)与CP-OFDM和UW OFDM相比,PAPR降低了约0.7 dB;(3)在IFFT输出中具有灵活的保护间隔长度。为了支持上述主张,提供了仿真结果,与上述候选波形相比,描述了所提出波形的准确性和增强的性能。
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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