Operation of Parallel-Connected DC–DC Converters / D. N. Ogorodnikov, V. V Grebennikov, I. S. Fadeev, E. V. Yaroslavtsev
Уровень набора: Instruments and Experimental TechniquesЯзык: английский ; резюме, eng.Страна: .Резюме или реферат: The possibility of reducing the rated power of filter capacitors, i.e., the ratio of the product of theeffective values of the voltage and current of a capacitor to the power of the DC–DC converter load, is shown.A DC–DC converter of the step-down type with a power of 40 W was used for this experimental study.A mathematical model was developed and a study of the change in the rated power for the converter components depending on the duty cycle and the number of cells of the converter was performed. The calculatedand experimental dependences of the rated powers of the input and output filter capacitors and the effectivevalue of the input current on the duty cycle for various numbers of used DC–DC converter cells are presented. The correspondence of the calculated and experimental values with an error of at most 10% has beenobtained..Примечания о наличии в документе библиографии/указателя: [References: 8 tit.].Аудитория: .Тематика: электронный ресурс | труды учёных ТПУ | преобразователи тока Ресурсы он-лайн:Щелкните здесь для доступа в онлайнTitle screen
[References: 8 tit.]
The possibility of reducing the rated power of filter capacitors, i.e., the ratio of the product of theeffective values of the voltage and current of a capacitor to the power of the DC–DC converter load, is shown.A DC–DC converter of the step-down type with a power of 40 W was used for this experimental study.A mathematical model was developed and a study of the change in the rated power for the converter components depending on the duty cycle and the number of cells of the converter was performed. The calculatedand experimental dependences of the rated powers of the input and output filter capacitors and the effectivevalue of the input current on the duty cycle for various numbers of used DC–DC converter cells are presented. The correspondence of the calculated and experimental values with an error of at most 10% has beenobtained.
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