The integrated sensing and communication (ISAC), in which the sensing and communication share the same frequency band and hardware, has emerged as a key technology in future wireless systems. Early works on ISAC have been focused on the design, analysis and optimization of practical ISAC technologies for various ISAC systems. While this line of works are necessary, it is equally important to study the fundamental limits of ISAC in order to understand the gap between the current state-of-the-art technologies and the performance limits, and provide useful insights and guidance for the development of better ISAC technologies that can approach the performance limits. In this paper, we aim to provide a comprehensive survey for the current research progress on the fundamental limits of ISAC. Particularly, we first propose a systematic classification method for both traditional radio sensing (such as radar sensing and wireless localization) and ISAC so that they can be naturally incorporated into a unified framework. Then we summarize the major performance metrics and bounds used in sensing, communications and ISAC, respectively. After that, we present the current research progresses on fundamental limits of each class of the traditional sensing and ISAC systems. Finally, the open problems and future research directions are discussed.
翻译:综合遥感和通信(ISAC)是遥感和通信共享同一频率波段和硬件的综合系统,已成为未来无线系统的关键技术,关于ISAC的早期工作重点是设计、分析和优化各种ISAC系统的实用ISAC技术,虽然这种工作是必需的,但同样重要的是研究ISAC的基本限制,以便了解目前最新技术和性能限制之间的差距,为开发更好的ISAC技术提供有用的见解和指导,使其能接近性能限制。在本文件中,我们旨在为ISAC基本界限的当前研究进展提供全面的调查。特别是,我们首先提出了传统无线电遥感(如雷达遥感和无线定位)和ISAC的系统分类方法,以便能够自然地将其纳入一个统一的框架。然后,我们分别总结在遥感、通信和ISAC中使用的主要性能衡量标准和界限。然后,我们介绍目前对传统遥感和ISAC系统每一类基本界限的研究进展。最后,讨论了公开的问题和今后的研究方向。