English

Hi-SAM: A high-scalable authentication model for satellite-ground Zero-Trust system using mean field game

Systems and Control 2024-08-13 v1 Computers and Society Computer Science and Game Theory Networking and Internet Architecture Systems and Control

Abstract

As more and more Internet of Thing (IoT) devices are connected to satellite networks, the Zero-Trust Architecture brings dynamic security to the satellite-ground system, while frequent authentication creates challenges for system availability. To make the system's accommodate more IoT devices, this paper proposes a high-scalable authentication model (Hi-SAM). Hi-SAM introduces the Proof-of-Work idea to authentication, which allows device to obtain the network resource based on frequency. To optimize the frequency, mean field game is used for competition among devices, which can reduce the decision space of large-scale population games. And a dynamic time-range message authentication code is designed for security. From the test at large population scales, Hi-SAM is superior in the optimization of authentication workload and the anomaly detection efficiency.

Keywords

Cite

@article{arxiv.2408.06185,
  title  = {Hi-SAM: A high-scalable authentication model for satellite-ground Zero-Trust system using mean field game},
  author = {Xuesong Wu and Tianshuai Zheng and Runfang Wu and Jie Ren and Junyan Guo and Ye Du},
  journal= {arXiv preprint arXiv:2408.06185},
  year   = {2024}
}
R2 v1 2026-06-28T18:10:30.207Z