论文标题

正交时频空间调制:有希望的下一代波形

Orthogonal Time-Frequency Space Modulation: A Promising Next-Generation Waveform

论文作者

Wei, Zhiqiang, Yuan, Weijie, Li, Shuangyang, Yuan, Jinhong, Bharatula, Ganesh, Hadani, Ronny, Hanzo, Lajos

论文摘要

设想第六代(6G)无线网络为近期的智能数字社会提供全球覆盖,从传统地面到非事物网络不等,在高运输频率的高机动性场景中可靠的通信将起着至关重要的作用。在这种情况下,常规的正交频施加多路复用(OFDM)调制,已在第四代(4G)和新兴的第五代(5G)细胞系统以及WiFi网络中都广泛使用。在这种情况下,本文旨在介绍最近提出的二维调制方案,称为正交时频空间(OTFS)调制,该计划通过调制延迟多个多个多型域中的信息来方便地适应通道动力学。本文提供了对OTF的简单阅读概述,突出了其基本动机和特定功能。提出了OTF和我们的初步结果的关键挑战。我们还讨论了OTF在6G无线网络中的一系列有希望的研究机会和潜在应用。

The sixth-generation (6G) wireless networks are envisioned to provide a global coverage for the intelligent digital society of the near future, ranging from traditional terrestrial to non-terrestrial networks, where reliable communications in high-mobility scenarios at high carrier frequencies would play a vital role. In such scenarios, the conventional orthogonal frequency division multiplexing (OFDM) modulation, that has been widely used in both the fourth-generation (4G) and the emerging fifth-generation (5G) cellular systems as well as in WiFi networks, is vulnerable to severe Doppler spread. In this context, this article aims to introduce a recently proposed two-dimensional modulation scheme referred to as orthogonal time-frequency space (OTFS) modulation, which conveniently accommodates the channel dynamics via modulating information in the delay-Doppler domain. This article provides an easy-reading overview of OTFS, highlighting its underlying motivation and specific features. The critical challenges of OTFS and our preliminary results are presented. We also discuss a range of promising research opportunities and potential applications of OTFS in 6G wireless networks.

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