The dense concentration of low-altitude, slow-speed, and small-size targets in the complex low-altitude environment poses significant security challenges, including failures in continuous wide-area sensing and ambiguous target intent, which existing regulatory frameworks struggle to address. Integrated sensing and communication (ISAC), a hallmark of next-generation mobile communication, offers a transformative approach to low-altitude security governance. By leveraging existing cellular infrastructure and spectrum resources, ISAC enables the construction of a seamless wide-area sensing network, supports intelligent feature extraction and intent inference, facilitates real-time collaborative decision-making, and establishes a dynamic trust authentication framework. This article systematically reviews the technical system, analyzes the security challenges, forecasts the enabling value of ISAC, and discusses the resulting open problems and challenges, thereby laying a foundation for future research and industrial implementation.
@article{arxiv.2601.13810,
title = {Integrated Sensing and Communication for Low-Altitude Security},
author = {Ruixing Ren},
journal= {arXiv preprint arXiv:2601.13810},
year = {2026}
}
Comments
6 pages, 5 figures; This paper presents a forward-looking perspective on the application of ISAC technology in low-altitude security governance, addressing challenges posed by low-altitude, slow-speed, and small-size targets