2017
DOI: 10.13052/jge1904-4720.71211
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Electric Vehicle Battery Charger with Improved Power Quality Cuk-Derived PFC Converter

Abstract: In this paper, an improved power quality converter derived from Cuk converter is proposed for the electric vehicle battery charging under universal-input voltage operation. The proposed converter offers high voltage gain, low voltage stress across the switch, lower conduction losses and reverse recovery losses during low input voltage condition. It yields improvement in efficiency at the low input supply voltage over the single-switch converters such as buck-boost, fly-back, SEPIC, and Cuk topologies and two-s… Show more

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Cited by 4 publications
(3 citation statements)
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“…The spillage inductance of the coupling inductor is used to accomplish Zero-Voltage Switching (ZVS). The current load on the charge siphon capacitors and the reducing speed of the diode charge can be limited because the use of the coupling inductor and output charge is non-pulsating [26].…”
Section: Integration Of Cuk-ky Convertersmentioning
confidence: 99%
“…The spillage inductance of the coupling inductor is used to accomplish Zero-Voltage Switching (ZVS). The current load on the charge siphon capacitors and the reducing speed of the diode charge can be limited because the use of the coupling inductor and output charge is non-pulsating [26].…”
Section: Integration Of Cuk-ky Convertersmentioning
confidence: 99%
“…Thus, DC-DC converter is used as interfacing device between the load and the RR to match the impedence. The DC-DC converter equivalent resistance versus duty cycle characteristics are also presented in Table 2 for MPPT algorithm for any renewable energy system [36,37].…”
Section: Selection Of Power Converters Topologymentioning
confidence: 99%
“…Interleaved Cuk converter is used to reduce the input current ripple and also to improve transient performances. The advantages of Cuk converter having better efficiency attributable to cancellation of source current ripple, reduction of ripple content in both output voltage and current, and improvement of transient performance [2][3][4]. The step up converter generate large output voltage ripples and slow transient response due to the pulsating output capacitor current and the right-half plane zero in transfer function from duty ratio to output voltage.…”
Section: Introductionmentioning
confidence: 99%