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Development of a Single-Sided Flux Magnetic Coupler for Electric Vehicle IPT Charging Systems

IEEE Transactions on Industrial Electronics · 2011 · Vol. 60(1) · pp. 318–328
Mickel BudhiaJ.T. BoysGrant A. CovicChang-Yu Huang

Abstract

Inductive power transfer is a practical method for recharging electric vehicles because it is safe, convenient, and reliable. The performance of the magnetic couplers that transfer power determines the overall feasibility of a complete system. Circular couplers are the most common topology in the literature; however, they have fundamentally limited coupling. Their flux patterns necessarily limit the operational air gap as well as tolerance to horizontal misalignment. A new polarized coupler topology [referred to as a double D (DD)] is presented, which overcomes these difficulties. DDs provide a charge zone five times larger than that possible with circular pads for a similar material cost and are smaller. A 0.31-m <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">2</sup> DD enables 2 kW of power transfer over an oval area measuring 540 mm × 800 mm with a 200-mm air gap. Leakage magnetic fields have been investigated and show that circular and DD couplers operating under similar power transfer conditions produce similar levels. Both topologies can be designed and operated to ensure compliance with international guidelines.

Wireless Power Transfer SystemsEnergy Harvesting in Wireless NetworksAdvanced Battery Technologies ResearchMaximum power transfer theoremTopology (electrical circuits)Magnetic fluxElectrical engineeringAir gap (plumbing)Network topologyInductive couplingMagnetic fieldCoupling (piping)Magnetic circuit
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References
Design Considerations for a Contactless Electric Vehicle Battery Charger
IEEE Transactions on Industrial Electronics · 2005 · 1,475 citations
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