A New Three-Winding Coupled Inductor High Step-Up DC–DC Converter Integrating With Switched-Capacitor Technique
Новый повышающий DC–DC-преобразователь с трехобмоточным связанным дросселем, интегрированный с техникой переключаемых конденсаторов
2023-08-11
SCID: 54.1/b85n7xj5
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high step-up DC–DC converterquasi-Z-source converterrenewable energy applicationsswitched-capacitor techniquethree-winding coupled inductor
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Abstract (AI)
In this article, a modified quasi-Z-source high step-up dc–dc converter is suggested for renewable energy applications, which features lower voltage stress of switch and wider region of duty cycle control. In addition, the superiority of the novel converter embodies ultrahigh voltage gain with a small turns ratio of coupled inductor, continuous input current, and an adjustable wide range of voltage gain. From coupled inductor, a step-down type winding (turn ratio less than 1) and a step-up type winding (turn ratio more than 1) not only enhance the voltage gain, but also provide more flexible voltage regulation. The low pulsating input current can decrease the volume and capacity of the input filter. Moreover, the switched-capacitor contains an internal passive clamp circuit for the power switch, which can alleviate the voltage spike during turn-offoperation and restore the leakage inductor energy. The operating principle and theoretical analysis of the converter are given in detail. A 200-W prototype was fabricated in the laboratory according to the design guideline, and the experimental results verify the validity of analysis.
Key Findings
1
A 200-W laboratory prototype experimentally validated the converter’s theoretical analysis and operating principles.
2
A modified quasi-Z-source high step-up DC–DC converter is introduced for renewable-energy applications, offering lower switch voltage stress and a wider duty-cycle control range.
3
An integrated switched-capacitor network provides passive clamping, suppresses turn-off voltage spikes, and recovers leakage-inductor energy.
4
Continuous, low-pulsation input current reduces the required volume and capacity of the input filter.
5
The converter achieves ultrahigh and adjustable voltage gain using a three-winding coupled inductor with both step-down and step-up windings, while requiring a small turns ratio.
Research Object
A modified quasi-Z-source high step-up DC–DC converter integrating a three-winding coupled inductor and switched-capacitor technique
Research Subject
Voltage-gain enhancement, voltage regulation flexibility, switch-voltage stress reduction, continuous low-pulsation input current, and leakage-energy recovery during turn-off
Publication Details
Publication Date
2023-08-11
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