2010 IEEE Vehicle Power and Propulsion Conference 2010
DOI: 10.1109/vppc.2010.5729071
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An integrated charger for plug-in hybrid electric vehicles based on a special interior permanent magnet motor

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Cited by 37 publications
(20 citation statements)
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“…During charging, the inverter is synchronized with the grid voltage through stator windings of the electric machine. In order to keep synchronism, the gate pluses of switching devices of the bidirectional converter are synchronized with the grid voltage by using PWM technique [5], [8]. The stator windings act as an isolated three-phase transformer and the converter can control the dc voltage and current at the battery side [7].…”
Section: Proposed Isolated Integrated Chargermentioning
confidence: 99%
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“…During charging, the inverter is synchronized with the grid voltage through stator windings of the electric machine. In order to keep synchronism, the gate pluses of switching devices of the bidirectional converter are synchronized with the grid voltage by using PWM technique [5], [8]. The stator windings act as an isolated three-phase transformer and the converter can control the dc voltage and current at the battery side [7].…”
Section: Proposed Isolated Integrated Chargermentioning
confidence: 99%
“…It can be a suitable option for both onboard and off-board charger. Several different types of integrated chargers are proposed for vehicle application where the electric machine is used as inductor or isolated transformer and the vehicle remains standstill during charging [2], [5].For non-isolated integrated chargers, extensive protection and shielding are used [5]. However for isolated charger, a wound rotor induction machine is used as an isolated transformer which causes low system efficiency due to high magnetization current.…”
Section: Introductionmentioning
confidence: 99%
“…Three reluctance machine topologies are proposed by Chang, Barnes and Haghbin [39], [40], [46]. H. C. Chang and C. M. Liaw present a compact battery-powered switched-reluctance motor (SRM) drive for an electric vehicle with voltage-boosting and on-board PFC charging capabilities as shown in Fig.…”
Section: C) Non-isolated/isolated Cases For Reluctance Motorsmentioning
confidence: 99%
“…Barnes and Pollock used SRM phase windings as a transformer during charging in [40], but without active PFC control. Haghbin et al [46] used an extra winding on one phase of the stator to have transformer operation for a single phase ac supply with a synchronous reluctance motor. In this case the stator will have unsymmetrical windings.…”
Section: C) Non-isolated/isolated Cases For Reluctance Motorsmentioning
confidence: 99%
“…On-board bidirectional chargers can be further divided into two main types of structures: reused (or integrated) structures and independent structures. In the reused structure, the EV motor's inverter is used as the full-bridge circuit of the grid-tied inverter; the EV motor's windings as the input inductances of the grid-tied inverter; and the EV motor itself as a line-frequency transformer for galvanic isolation [40][41][42][43][44][45][46][47][48]. By using the existing system in the EV, the reused topologies incur lower costs.…”
Section: Introductionmentioning
confidence: 99%