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Wireless Energy Transmission Channel Modeling in Resonant Beam Charging for IoT Devices

2018/07/12 by Wei Wang, Qingqing Zhang, Wang, Wei +9 · 1 citation
Engineering · #Energy Harvesting in Wireless Networks #FOS: Electrical engineering #Innovative Energy Harvesting Technologies #Signal Processing (eess.SP) #Wireless Power Transfer Systems #electronic engineering #information engineering

paper · pdf · doi:10.48550/arxiv.1807.05980

openalex publication_date 2018/07/12 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28

Abstract

Power supply for Internet of Things (IoT) devices is one of the bottlenecks in IoT development. To provide perpetual power supply to IoT devices, resonant beam charging (RBC) is a promising safe, long-range and high-power wireless power transfer solution. How long distance can RBC reach and how much power can RBC transfer? In this paper, we analyze the RBC's consistent and steady operational conditions, which determine the maximum power transmission distance. Moreover, we study the power transmission efficiency within the operational distance, which determines the deliverable power through the RBC energy transmission channel. Based on this energy transmission channel modeling, we numerically evaluate its impacts on the RBC system performance in terms of the transmission distance, the transmission efficiency, and the output electrical power. The analysis leads to the guidelines for the RBC system design and implementation, which can deliver multi-Watt power over multi-meter distance wirelessly for IoT devices.

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