论文标题

延迟对齐调制:启用无均衡的单载波通信

Delay Alignment Modulation: Enabling Equalization-Free Single-Carrier Communication

论文作者

Lu, Haiquan, Zeng, Yong

论文摘要

本文提出了一种新型的宽带传输技术,称为延迟对齐调制(DAM),该技术可以使低复杂性无均衡的单载波通信,但没有遇到符号间干扰(ISI)。大坝的关键思想是故意在发射器侧引入适当的延迟,以便在传播时间散射通道之后,所有多路径信号组件都将同时和建设性地到达接收器。我们首先表明,通过将大坝应用于基本的多输入单输出(MISO)通信系统,可以通过简单的零效(ZF)波束成形获得无ISI的无添加性白色高斯噪声(AWGN)系统。此外,使用ISI-Maximal-Ratio传播(MRT)和ISI-MIX-MIX均值误差(MMSE)横梁进行研究,研究了更通用的大坝方案。 Simulation results are provided to show that when the channel is sparse and/or the antenna dimension is large, DAM not only resolves the notorious practical issues suffered by orthogonal frequency-division multiplexing (OFDM) such as high peak-to-average-power ratio (PAPR), severe out-of-band (OOB) emission, and vulnerability to carrier frequency offset (CFO), with low complexity, but also achieves higher spectral由于节省了警卫间隔开销而引起的效率。

This paper proposes a novel broadband transmission technology, termed delay alignment modulation (DAM), which enables the low-complexity equalization-free single-carrier communication, yet without suffering from inter-symbol interference (ISI). The key idea of DAM is to deliberately introduce appropriate delays for information-bearing symbols at the transmitter side, so that after propagating over the time-dispersive channel, all multi-path signal components will arrive at the receiver simultaneously and constructively. We first show that by applying DAM for the basic multiple-input single-output (MISO) communication system, an ISI-free additive white Gaussian noise (AWGN) system can be obtained with the simple zero-forcing (ZF) beamforming. Furthermore, the more general DAM scheme is studied with the ISI-maximal-ratio transmission (MRT) and the ISI-minimum mean-square error (MMSE) beamforming. Simulation results are provided to show that when the channel is sparse and/or the antenna dimension is large, DAM not only resolves the notorious practical issues suffered by orthogonal frequency-division multiplexing (OFDM) such as high peak-to-average-power ratio (PAPR), severe out-of-band (OOB) emission, and vulnerability to carrier frequency offset (CFO), with low complexity, but also achieves higher spectral efficiency due to the saving of guard interval overhead.

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