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논문 기본 정보

자료유형
학술저널
저자정보
Yingjie Wang (China University of Mining and Technology) Lanyi Jiao (China University of Mining and Technology) Bo Yang (China University of Mining and Technology) Wenchao Wang (Huizhou Power Supply Bureau) Haiyuan Liu (China University of Mining and Technology)
저널정보
전력전자학회 JOURNAL OF POWER ELECTRONICS JOURNAL OF POWER ELECTRONICS Vol.18 No.6
발행연도
2018.11
수록면
1,879 - 1,888 (10page)

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초록· 키워드

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With power level of grid-connected converters rising, the switching frequency of the switching devices is commonly greatly reduced to improve its power capacity. However, this results in serious couplings of the dq current components, which leads to degradation of the static and dynamic performances of grid-connected converters and fluctuations of the reactive power in dynamic processes. In this paper, complex vector models under low switching frequency are established for an L/LCL grid-connected converter, and the relationship between the switching frequency and the coupling degree is analyzed. In addition, a series decoupling current control strategy is put forward. It is shown that the proposed control strategy can eliminate the couplings, improve the performances and have good robustness to parameter variations through static and dynamic characteristics analyses and a sensitivity analysis. Experimental and simulation results also verify the correctness of the theoretical analyses and the superiority of the proposed control strategy.

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Abstract
I. INTRODUCTION
II. L/LCL TYPE GRID-CONNECTED CONVERTER MODEL UNDER A LOW SWITCHING FREQUENCY BASED ON COMPLEX VECTORS
III. SERIES DECOUPLING STRATEGY BASED ON A COMPLEX VECTOR UNDER A LOW SWITCHING FREQUENCY
IV. COMPARISON ANALYSIS OF UNDECOUPLED AND SERIES DECOUPLED CURRENT CONTROL SYSTEMS
V. EXPERIMENTAL AND SIMULATION RESULTS
VI. CONCLUSIONS
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