Distributed Charging Control in Broadband Wireless Power Transfer Networks
Suzhi Bi, Rui Zhang

TL;DR
This paper introduces a distributed, voting-based charging control framework for broadband wireless power transfer networks that enhances network lifetime by optimizing power allocation based on channel estimates and battery states.
Contribution
It proposes a practical distributed control protocol utilizing voting feedback to maximize network lifetime without centralized coordination.
Findings
Significant increase in network lifetime demonstrated through simulations.
Effective power allocation based on voting improves energy distribution.
Framework adapts to battery states for optimized charging efficiency.
Abstract
Wireless power transfer (WPT) technology provides a cost-effective solution to achieve sustainable energy supply in wireless networks, where WPT-enabled energy nodes (ENs) can charge wireless devices (WDs) remotely without interruption to the use. However, in a heterogeneous WPT network with distributed ENs and WDs, some WDs may quickly deplete their batteries due to the lack of timely wireless power supply by the ENs, thus resulting in short network operating lifetime. In this paper, we exploit frequency diversity in a broadband WPT network and study the distributed charging control by ENs to maximize network lifetime. In particular, we propose a practical voting-based distributed charging control framework where each WD simply estimates the broadband channel, casts its vote(s) for some strong sub-channel(s) and sends to the ENs along with its battery state information, based on which…
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Taxonomy
TopicsEnergy Harvesting in Wireless Networks · Wireless Power Transfer Systems · Advanced MIMO Systems Optimization
