이중 변환 UPS 병렬 운전의 제어 동특성 향상을 위한 동기 좌표계 전압 제어기 구조Voltage Control Scheme in Synchronous Reference Frame for Improving Dynamic Characteristics in Parallel Operation of Double-Conversion UPSs
- Other Titles
- Voltage Control Scheme in Synchronous Reference Frame for Improving Dynamic Characteristics in Parallel Operation of Double-Conversion UPSs
- Authors
- 모재성; 윤영두; 류효준; 이민성; 최승철; 김성민; 김석민; 강호현; 김희중
- Issue Date
- Aug-2022
- Publisher
- 전력전자학회
- Keywords
- Additional feed-forward; Discrete-time current control; Double-conversion UPS; Synchronous reference frame controller; 2-DOF control
- Citation
- 전력전자학회 논문지, v.27, no.4, pp 283 - 290
- Pages
- 8
- Indexed
- KCI
- Journal Title
- 전력전자학회 논문지
- Volume
- 27
- Number
- 4
- Start Page
- 283
- End Page
- 290
- URI
- https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/111015
- DOI
- 10.6113/TKPE.2022.27.4.283
- ISSN
- 1229-2214
2288-6281
- Abstract
- This study proposes a voltage control scheme in a synchronous reference frame to improve the dynamic characteristics of double-conversion UPSs. UPSs need to control positive and negative sequence voltage, so that positive and negative sequence extractors are generally used to obtain each sequence of the voltage and current. Voltage and current controllers for each sequence are implemented. However, the extractor causes considerable delay, and the delay restricts the control performance, especially for the current controller. To improve the dynamics of the current controller, the proposed scheme adopts a unified current controller without separating positive and negative sequences. By using discrete-time current controller, the control bandwidth can be extended significantly so that negative sequence current can be controlled. To enhance the performance, an additional feed-forward technique for output voltage regulation is proposed. The validity of the proposed controller is verified by experiments.
This study proposes a voltage control scheme in a synchronous reference frame to improve the dynamic characteristics of double-conversion UPSs. UPSs need to control positive and negative sequence voltage, so that positive and negative sequence extractors are generally used to obtain each sequence of the voltage and current. Voltage and current controllers for each sequence are implemented. However, the extractor causes considerable delay, and the delay restricts the control performance, especially for the current controller. To improve the dynamics of the current controller, the proposed scheme adopts a unified current controller without separating positive and negative sequences. By using discrete-time current controller, the control bandwidth can be extended significantly so that negative sequence current can be controlled. To enhance the performance, an additional feed-forward technique for output voltage regulation is proposed. The validity of the proposed controller is verified by experiments.
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