Investigation on Induced Energy Extraction from High-Voltage Transmission Lines Based on Three-Coil WPT Systems

Author:

Li Weilong1ORCID,Chen Yuhang2,Peng Zhou2,Wang Xirui2,Xia Chenyang2

Affiliation:

1. Anhui Academy of Coal Science, Hefei 230001, China

2. School of Electrical Engineering, China University of Mining and Technology, Xuzhou 221008, China

Abstract

In order to realize an online power supply, this article develops an explicit design of induction power extraction technology combined with wireless power transmission (WPT) technology. Unlike the power supply mode of traditional batteries of online monitoring devices of high-voltage transmission lines, this technology solves the short battery life cycle problems. First, the principle of induction power extraction is analyzed. Based on the equivalent circuit of the mutual inductance model, expressions of induction power extraction without and with core saturation are derived, respectively. According to the current transformer (CT) magnetic coupling diagram, the open-circuit voltage of the secondary side of the CT is deduced. Therefore, the CT material and size could be selected. The CT coupling model is used to equivalent the current transformer to the ideal voltage source. Then, the four basic topological spaces of the magnetic coupling resonant WPT system are analyzed and calculated, and the efficiency of the SS topology WPT system is analyzed. Furthermore, aiming at long-distance power transmission, this article described the building of a three-coil WPT system and the analysis of the corresponding transmission efficiency and output power expression. With the aid of Maxwell, the technology proposed is simulated based on a 110 kV high-voltage transmission line with 1.2 m as the transmission distance of the system. Finally, the influence of a coupling coefficient and load resistance on the transmission characteristics of the multicoil system is obtained. Consequently, the simulation results with a system output power of 14.4 W verify the effectiveness of the technology.

Funder

2020 Anhui Provincial Natural Science Foundation Energy Internet Joint Fund Project

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference19 articles.

1. Modeling and Analysis of Magnetic Resonance Mode Wireless Power Transfer System;Zhai;Chin. J. Electr. Eng.,2012

2. Design of CT energy source for high-voltage transmission lines;Jiao;Power Technol.,2013

3. Zhang, X. (2019). Research on Multi-Coil Magnetic Coupling Resonant Wireless Power Transmission System, North China Electric Power University.

4. Rong, E. (2019). Research on the Key Technology of Inductive Power Taking of Transmission Lines and Design of Power Taking Device, Kunming University of Science and Technology.

5. Design of non-contact high-efficiency induction power-taking transformer for power cables;Wang;Power Technol.,2013

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