Dual Side Control Design for a 600w Lcc Compensated Wireless Power Transfer System

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Date

2022

Authors

Pashaei, A.
Aydin, E.
Aydemir, M.T.

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Institute of Electrical and Electronics Engineers Inc.

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Green Open Access

No

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Abstract

The purpose of this paper is to design a dual side control for a 600 W LCC resonant WPT electrical bicycle with an 85 kHz resonant frequency. Primary side control use inverter voltage and current to determine mutual inductance and load value in coils misalignment case. The secondary side control uses a DC-DC converter that has two voltage and current feedback with a PI controller to achieve CC/CV charging in the battery. Additionally, with primary side control the high-frequency inverter operates in ZVS mode. Optimal design parameters are obtained and results and control method feasibility validated by simulations. © 2022 IEEE.

Description

Batman University and Batman Energy Coordination Center (EKOM)
2022 IEEE Global Energy Conference, GEC 2022 --26 October 2022 through 29 October 2022 -- --185674

Keywords

Dual side control, LCC resonant, Zero voltage switching, DC-DC converters, Electric inverters, Electric loads, Energy transfer, Inductance, Inductive power transmission, Natural frequencies, 'current, Control design, Dual side control, Inductance values, LCC resonant, Load values, Mutual inductance, Power transfer systems, Primary side controls, Zero- Voltage Switching, Zero voltage switching, Power transfer systems, DC-DC converters, Mutual inductance, Zero voltage switching, Natural frequencies, Electric inverters, Load values, Zero- Voltage Switching, 'current, Energy transfer, Inductive power transmission, Primary side controls, Inductance values, Dual side control, LCC resonant, Inductance, Electric loads, Control design

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Fields of Science

02 engineering and technology, 0202 electrical engineering, electronic engineering, information engineering

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1

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IEEE Global Energy Conference, GEC 2022

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Start Page

80

End Page

83
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Scopus : 1

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1

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8

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1

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