发表机构
Hongkong Polytechnic University; University of Klagenfurt(香港理工大学; 克拉根福大学)
机构由 AI 辅助整理,请以论文原文为准。AI 中文总结
本文探讨以射频ISAC为中心的跨介质双向技术转移,展示VLC、光纤和PLC的启发,以及RF-ISAC的贡献,强调可转移原理与信息损失。
AI 中文摘要
集成感知与通信(ISAC)涵盖射频(RF)、可见光、光纤、电力线和声学系统,然而这些领域之间的技术转移仍未得到充分探索。本文研究了以射频ISAC为中心的双向知识与技术转移。文章展示了可见光通信(VLC)如何推动功率域感知,光纤如何实现差分参考和分布式处理,以及电力线通信(PLC)如何启发拓扑感知监测和自适应探测。反之,射频ISAC贡献了联合信号设计、杂波抑制和弱回波恢复。文章强调了可转移的原理、为改进ISAC所需的适应性调整,以及跨物理介质可能丢失的信息。
英文摘要
Integrated sensing and communications (ISAC) spans radiofrequency (RF), visible-light, optical-fiber, power-line, and acoustic systems, yet technology transfer across these domains remains underexplored. This article examines bidirectional knowledge and technology transfers centred on RF-ISAC. It shows how VLC motivates power-domain sensing, fiber enables differential referencing and distributed processing, and PLC inspires topology-aware monitoring and adaptive probing. Conversely, RF-ISAC contributes joint signal design, nuisance suppression, and weak-return recovery. The article highlights transferable principles, required adaptations to improve ISAC, and information potentially lost across physical media.
Comments2 figures, 2 tables