4.5 Article

Design Considerations for Adding Series Inductors to Reduce Electromagnetic Field Interference in an Over-Coupled WPT System

Journal

ENERGIES
Volume 14, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/en14102791

Keywords

wireless power transfer (WPT); over-coupled coils; electromagnetic interference (EMI) reduction; series inductors; topology; input impedance

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Funding

  1. Institute of Civil Military Technology Cooperation - Defense Acquisition Program Administration
  2. Institute of Information & communications Technology Planning & Evaluation (IITP) - Korea government (MSIT) [2020-0-00839, IITP-2020-0-00618]
  3. Ministry of Trade, Industry and Energy of Korean government [UM19502RD5]

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This paper analyzes how over-coupled coils affect odd harmonic current and electromagnetic interference (EMI) in wireless power transfer (WPT) systems, and proposes design considerations for solving the EMI problem. By controlling the odd harmonic component current and designing additional series inductors, the system efficiency can be improved and EMI issues can be reduced.
This paper analyzes how over-coupled coils affect odd harmonic current and electromagnetic interference (EMI) in a wireless power transfer (WPT) system, and proposes design considerations for series inductors to solve the EMI problem. When the air gap of the coils of the WPT system decreases below a certain level and the coils are over-coupled, the odd harmonic component of the input impedance of the system decreases and odd harmonic currents increase. The increase in the odd harmonic components current quickly aggravates the EMI issues. To solve the EMI problem of the over-coupled WPT system, additional series inductors were applied to the system, and considerations for designing the series inductors were analyzed. When designing additional series inductors, power transfer efficiency, maximum power transfer, input impedance and odd harmonic components current must be considered. Using simulations and experiments, it was confirmed that the WPT system designed with analyzed considerations maintained relatively high efficiency and reduced EMI issues.

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