LAPSE:2023.26406v1
Published Article

LAPSE:2023.26406v1
Development of a DC-Side Direct Current Controlled Active Ripple Filter for Eliminating the Double-Line-Frequency Current Ripple in a Single-Phase DC/AC Conversion System
April 3, 2023
Abstract
The objective of this paper is to propose an active ripple filter (ARF) using the patented DC-side direct current control for eliminating the double-line-frequency current ripple in a single-phase DC/AC conversion system. The proposed ARF and its control strategies can not only prolong the usage life of the DC energy source but also improve the DC/AC system performance. At first, the phenomena of double-line-frequency current ripple and the operation principle of the ARF are illustrated. Then, steady-state analysis, small-signal model, and control loop design of the ARF architecture are derived. The proposed control system includes: (1) a DC current control loop to provide the excellent ripple eliminating performance on the output of the DC energy source; (2) a voltage control loop for the high-side DC-bus voltage of the ARF to achieve good steady-state and transient-state responses; (3) a voltage feedforward loop for the low-side voltage of the ARF to cancel the voltage fluctuation caused by the instability of the DC energy source. Finally, the feasibility of the proposed concept can be verified by the system simulation, and the experimental results show that the nearly zero double-line-frequency current ripple on the DC-side in a single-phase DC/AC conversion system can be achieved.
The objective of this paper is to propose an active ripple filter (ARF) using the patented DC-side direct current control for eliminating the double-line-frequency current ripple in a single-phase DC/AC conversion system. The proposed ARF and its control strategies can not only prolong the usage life of the DC energy source but also improve the DC/AC system performance. At first, the phenomena of double-line-frequency current ripple and the operation principle of the ARF are illustrated. Then, steady-state analysis, small-signal model, and control loop design of the ARF architecture are derived. The proposed control system includes: (1) a DC current control loop to provide the excellent ripple eliminating performance on the output of the DC energy source; (2) a voltage control loop for the high-side DC-bus voltage of the ARF to achieve good steady-state and transient-state responses; (3) a voltage feedforward loop for the low-side voltage of the ARF to cancel the voltage fluctuation caused by the instability of the DC energy source. Finally, the feasibility of the proposed concept can be verified by the system simulation, and the experimental results show that the nearly zero double-line-frequency current ripple on the DC-side in a single-phase DC/AC conversion system can be achieved.
Record ID
Keywords
active ripple filter (ARF), double-line-frequency current ripple, single-phase DC/AC
Subject
Suggested Citation
Chen YC, Chen LR, Lai CM, Lin YC, Kuo TJ. Development of a DC-Side Direct Current Controlled Active Ripple Filter for Eliminating the Double-Line-Frequency Current Ripple in a Single-Phase DC/AC Conversion System. (2023). LAPSE:2023.26406v1
Author Affiliations
Chen YC: Department of Electrical Engineering, National Changhua University of Education, Changhua 500, Taiwan
Chen LR: Department of Electrical Engineering, National Changhua University of Education, Changhua 500, Taiwan
Lai CM: Department of Electrical Engineering, National Chung Hsing University, Taichung 402, Taiwan [ORCID]
Lin YC: Department of Electrical Engineering, National Taiwan University, Taipei 106, Taiwan
Kuo TJ: Department of Electrical Engineering, National Chung Hsing University, Taichung 402, Taiwan
Chen LR: Department of Electrical Engineering, National Changhua University of Education, Changhua 500, Taiwan
Lai CM: Department of Electrical Engineering, National Chung Hsing University, Taichung 402, Taiwan [ORCID]
Lin YC: Department of Electrical Engineering, National Taiwan University, Taipei 106, Taiwan
Kuo TJ: Department of Electrical Engineering, National Chung Hsing University, Taichung 402, Taiwan
Journal Name
Energies
Volume
13
Issue
18
Article Number
E4772
Year
2020
Publication Date
2020-09-12
ISSN
1996-1073
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Original Submission
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PII: en13184772, Publication Type: Journal Article
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LAPSE:2023.26406v1
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https://doi.org/10.3390/en13184772
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Apr 3, 2023
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