2016 IEEE Transportation Electrification Conference and Expo, Asia-Pacific (ITEC Asia-Pacific) 2016
DOI: 10.1109/itec-ap.2016.7513047
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Cited by 3 publications
(21 citation statements)
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“…14 Moreover, the duty cycle of one-fourth and one-half results in a complete cancelation of the proposed converter output inductor current ripple, which means that the proposed paper has a better dynamic response and a smaller size of passive components. As demonstrated in Figure 10A, the current ripple of previous converters [14][15][16][17] is canceled when D = 1/2.…”
Section: Comparison and Performance Assessmentmentioning
confidence: 94%
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“…14 Moreover, the duty cycle of one-fourth and one-half results in a complete cancelation of the proposed converter output inductor current ripple, which means that the proposed paper has a better dynamic response and a smaller size of passive components. As demonstrated in Figure 10A, the current ripple of previous converters [14][15][16][17] is canceled when D = 1/2.…”
Section: Comparison and Performance Assessmentmentioning
confidence: 94%
“…The performance comparison between the dc-dc converters published in previous studies [14][15][16][17]26,27 and the proposed topology is illustrated in Figure 10. In CCM operation, the relationship between the dc voltage gain and the duty cycle in the proposed converter and published works in previous works [14][15][16][17]26,27 is exhibited in Figure 10B. It can be seen that the dc voltage gain of the proposed converter is higher than the other converters, and it reaches the maximum value with a duty cycle equal to 0.5.…”
Section: Comparison and Performance Assessmentmentioning
confidence: 99%
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