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논문 기본 정보

자료유형
학술저널
저자정보
Yu Wang (South China University of Technology) Yun-Xiang Xie (South China University of Technology)
저널정보
전력전자학회 JOURNAL OF POWER ELECTRONICS JOURNAL OF POWER ELECTRONICS Vol.14 No.4
발행연도
2014.7
수록면
764 - 777 (14page)

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초록· 키워드

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This study analyzes the mathematical relationship between DC-link voltage and system parameters for shunt active power filters (APFs). Analysis and mathematical deduction are used to determine the required minimum DC-link voltage for APF. A novel adaptive DC-link voltage controller for the three-phase four-wire shunt APF is then proposed. In this controller, the DC-link voltage reference value will be maintained at the required minimum voltage level. Therefore, power consumption and switching loss will effectively decrease. The DC-link voltage can also adaptively yield different DC-link voltage levels based on different harmonic currents and grid voltage levels and thus avoid the effects of harmonic current and grid voltage fluctuation on compensation performance. Finally, representative simulation and experimental results in a three-phase four-wire center-split shunt APF are presented to verify the validity and effectiveness of the minimum DC-link voltage design and the proposed adaptive DC-link voltage controller.

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Abstract
Ⅰ. INTRODUCTION
Ⅱ. THREE-PHASE FOUR-WIRE CENTER-SPLIT SHUNT APF AND ITS SINGLE-PHASE CIRCUIT MODEL
Ⅲ. MINIMUM DC-LINK VOLTAGE DEDUCTION FORTHE THREE-PHASE FOUR-WIRE SHUNT APF
Ⅳ. MINIMUM DC-LINK VOLTAGE DEDUCTION FORTHE THREE-PHASE FOUR-WIRE SHUNT APF
Ⅴ. SIMULATION AND EXPERIMENTAL VERIFICATIONOF MINIMUM DC-LINK VOLTAGE DEDUCTION
Ⅵ. SIMULATION AND EXPERIMENTAL VERIFICATIONOF PROPOSED ADAPTIVE DC-LINK VOLTAGE CONTROLLER
Ⅶ. CONCLUSIONS
REFERENCES

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