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.
翻译:设想第六代(6G)无线网络为近期智能数字社会提供全球覆盖,范围从传统的地面网络到非地球网络,在高载荷频率高移动情景下的可靠通信将发挥至关重要的作用,在这种情景中,常规正方位频率分多路调制(OFDM)在第四代(4G)和新兴第五代(5G)移动电话系统以及无线Fi网络中广泛使用,容易发生严重的多普勒扩散,本文章旨在引入最近提出的双维调制方案,称为orthogonal时频空间(OTFS)调制(OTFS),方便地通过调制制延迟-多普勒域的频道动态,文章对OTFS系统进行简略的概述,突出其基本动机和具体特点,介绍OTFS的重大挑战和我们的初步结果。我们还讨论了6G无线网络中OTFS的一系列有希望的研究机会和潜在应用。