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A Single-Stage Bidirectional Inductive Power Transfer System With Closed-Loop Current Control Strategy

Bharat Vardani, Narsa Reddy Tummuru

2020IEEE Transactions on Transportation Electrification46 citationsDOI

Abstract

A conventional two-stage topology that consists of a dc/ac converter, a dc-link, and two ac/dc converter is being used as wireless charging of electric vehicles (EVs). However, the conventional topology contains more conversion stages with a bulky dc-link capacitor, and implementation of control strategies is not easy to transfer power from the primary coil to pickup coil or vice versa. A single-stage, inductive power transfer (IPT) system with a simple control strategy is needed to reduce the conversion stages and to increase the reliability of the system. This article proposes a control strategy for a single-stage conversion topology that is easy to implement and more importantly can achieve unity power factor (UPF) using a single controller. The experimental validation of single-stage conversion topology and steady-state analysis with series-series (SS) compensation scheme is presented in this article. A fixed angle of ±90° in between the output phase of the converters is achieved without estimating any power or current parameters. A hardware prototype working at a lower watt rating is analyzed, and the validation of the proposed system for 3.7-kVA rating as per the international standard is simulated. Furthermore, transient response is also observed to verify the closed-loop control scheme of battery current.

Topics & Concepts

Maximum power transfer theoremTopology (electrical circuits)Electromagnetic coilCapacitorPower factorControl theory (sociology)Wireless power transferTransient (computer programming)ConvertersPower (physics)Computer scienceEngineeringElectronic engineeringElectrical engineeringVoltageControl (management)PhysicsOperating systemQuantum mechanicsArtificial intelligenceWireless Power Transfer SystemsEnergy Harvesting in Wireless NetworksAdvanced Battery Technologies Research
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