Wang Jian, Varshney Neeraj, Gentile Camillo, Blandino Steve, Chuang Jack, Golmie Nada
Wireless Networks Division, National Institute of Standards and Technology, Gaithersburg, MD 20899 USA.
IEEE Internet Things J. 2022 Dec;9(23). doi: 10.1109/jiot.2022.3190845.
The design of integrated sensing and communication (ISAC) systems has drawn recent attention for its capacity to solve a number of challenges. Indeed, ISAC can enable numerous benefits, such as the sharing of spectrum resources, hardware, and software, and improving the interoperability of sensing and communication. In this article, we seek to provide a thorough investigation of ISAC. We begin by reviewing the paradigms of sensing-centric design, communication-centric design, and co-design of sensing and communication. We then explore the enabling techniques that are viable for ISAC (i.e., transmit waveform design, environment modeling, sensing source, signal processing, and data processing). We also present some emergent smart-world applications that could benefit from ISAC. Furthermore, we describe some prominent tools used to collect sensing data and publicly available sensing data sets for research and development, as well as some standardization efforts. Finally, we highlight some challenges and new areas of research in ISAC, providing a helpful reference for ISAC researchers and practitioners, as well as the broader research and industry communities.
集成传感与通信(ISAC)系统的设计因其解决诸多挑战的能力而受到了近期的关注。事实上,ISAC能够带来诸多益处,例如频谱资源、硬件和软件的共享,以及提升传感与通信的互操作性。在本文中,我们旨在对ISAC进行全面的研究。我们首先回顾以传感为中心的设计、以通信为中心的设计以及传感与通信协同设计的范式。然后,我们探索适用于ISAC的可行使能技术(即发射波形设计、环境建模、传感源、信号处理和数据处理)。我们还介绍了一些可从ISAC中受益的新兴智能世界应用。此外,我们描述了一些用于收集传感数据的突出工具以及可供研发使用的公开传感数据集,还有一些标准化工作。最后,我们强调了ISAC中的一些挑战和新的研究领域,为ISAC研究人员和从业者以及更广泛的研究和行业社区提供了有益的参考。