English

Cooperative Caching Towards Efficient Spectrum Utilization in Cognitive-IoT Networks

Signal Processing 2025-12-17 v1 Networking and Internet Architecture

Abstract

In cognitive Internet of Things (CIoT) networks, efficient spectrum sharing is essential to address increasing wireless demands. This paper presents a novel deep reinforcement learning (DRL)-based approach for joint cooperative caching and spectrum access coordination in CIoT networks, enabling the CIoT agents to collaborate with primary users (PUs) by caching PU content and serving their requests, fostering mutual benefits. The proposed DRL framework jointly optimizes caching policy and spectrum access under challenging conditions. Unlike traditional cognitive radio (CR) methods, where CIoT agents vacate the spectrum for PUs, or relaying techniques, which merely support spectrum sharing, caching brings data closer to the edge, reducing latency by minimizing retrieval distance. Simulations demonstrate that our approach outperforms others in lowering latency, increasing CIoT and PU cache hit rates, and enhancing network throughput. This approach redefines spectrum sharing, offering a fresh perspective on CIoT network design and illustrating the potential of DRL-guided caching to highlight the benefits of collaboration over dynamic spectrum access scenarios, elevating CIoT performance under constrained resources.

Keywords

Cite

@article{arxiv.2512.14029,
  title  = {Cooperative Caching Towards Efficient Spectrum Utilization in Cognitive-IoT Networks},
  author = {Nadia Abdolkhani and Walaa Hamouda},
  journal= {arXiv preprint arXiv:2512.14029},
  year   = {2025}
}

Comments

Published in Proc. IEEE ICC 2025. This is the authors' accepted manuscript version

R2 v1 2026-07-01T08:26:34.246Z