Collaborative Charging Optimization for Wireless Rechargeable Sensor Networks via Heterogeneous Mobile Chargers
Jianhang Yao, Hui Kang, Geng Sun, Jiahui Li, Hongjuan Li, Jiacheng Wang, Yinqiu Liu, Dusit Niyato

TL;DR
This paper presents a novel heterogeneous mobile charging strategy using aerial and ground vehicles for wireless sensor networks, optimizing energy distribution and extending network lifetime in complex terrains.
Contribution
It introduces the IHATRPO algorithm with self-attention and Beta sampling to effectively coordinate heterogeneous chargers in dynamic environments.
Findings
39% performance improvement over HATRPO
Significant increase in sensor node survival rate
Enhanced charging system efficiency
Abstract
Despite the rapid proliferation of Internet of Things applications driving widespread wireless sensor network (WSN) deployment, traditional WSNs remain fundamentally constrained by persistent energy limitations that severely restrict network lifetime and operational sustainability. Wireless rechargeable sensor networks (WRSNs) integrated with wireless power transfer (WPT) technology emerge as a transformative paradigm, theoretically enabling unlimited operational lifetime. In this paper, we investigate a heterogeneous mobile charging architecture that strategically combines automated aerial vehicles (AAVs) and ground smart vehicles (SVs) in complex terrain scenarios to collaboratively exploit the superior mobility of AAVs and extended endurance of SVs for optimal energy distribution. We formulate a multi-objective optimization problem that simultaneously addresses the dynamic balance of…
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Taxonomy
TopicsEnergy Harvesting in Wireless Networks · UAV Applications and Optimization · Wireless Power Transfer Systems
