A Voltage Modulated Direct Power Control of the Doubly Fed Induction Generator

Shuning Gao, Haoran Zhao, Yonghao Gui, Zhenbing Zhang, Wu Qiuwei

Research output: Contribution to book/anthology/report/conference proceedingArticle in proceedingResearchpeer-review

Abstract

In this paper, a Voltage Modulated Direct Power Control (VM-DPC) for doubly fed induction generator is proposed. The suggested method is implemented in the rotor reference frame, so that the phase-lock loop can be removed and relevant potential instability can be eliminated. The main advantage is that the proposed method has a relative simple structure compare to conventional Look-Up Table (LUT) DPC and sliding mode control (SMC), besides, it not only guarantees an enhanced transient performance but also keeps the steady-state harmonic spectra at the same level as voltage-oriented strategy. Finally, a simulation based on MATLAB/Simulink is provided to validate the performance of proposed VM-DPC strategy.
Original languageEnglish
Title of host publicationIEEE PES General Meeting
Number of pages5
Publication dateAug 2019
Pages1-5
Publication statusPublished - Aug 2019

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Asynchronous generators
Power control
Electric potential
Sliding mode control
MATLAB
Rotors

Keywords

  • doubly fed induction generator,
  • voltage modulated direct power control
  • VM-DPC

Cite this

Gao, S., Zhao, H., Gui, Y., Zhang, Z., & Qiuwei, W. (2019). A Voltage Modulated Direct Power Control of the Doubly Fed Induction Generator. In IEEE PES General Meeting (pp. 1-5)
Gao, Shuning ; Zhao, Haoran ; Gui, Yonghao ; Zhang, Zhenbing ; Qiuwei, Wu. / A Voltage Modulated Direct Power Control of the Doubly Fed Induction Generator. IEEE PES General Meeting. 2019. pp. 1-5
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abstract = "In this paper, a Voltage Modulated Direct Power Control (VM-DPC) for doubly fed induction generator is proposed. The suggested method is implemented in the rotor reference frame, so that the phase-lock loop can be removed and relevant potential instability can be eliminated. The main advantage is that the proposed method has a relative simple structure compare to conventional Look-Up Table (LUT) DPC and sliding mode control (SMC), besides, it not only guarantees an enhanced transient performance but also keeps the steady-state harmonic spectra at the same level as voltage-oriented strategy. Finally, a simulation based on MATLAB/Simulink is provided to validate the performance of proposed VM-DPC strategy.",
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Gao, S, Zhao, H, Gui, Y, Zhang, Z & Qiuwei, W 2019, A Voltage Modulated Direct Power Control of the Doubly Fed Induction Generator. in IEEE PES General Meeting. pp. 1-5.

A Voltage Modulated Direct Power Control of the Doubly Fed Induction Generator. / Gao, Shuning; Zhao, Haoran; Gui, Yonghao; Zhang, Zhenbing; Qiuwei, Wu.

IEEE PES General Meeting. 2019. p. 1-5.

Research output: Contribution to book/anthology/report/conference proceedingArticle in proceedingResearchpeer-review

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T1 - A Voltage Modulated Direct Power Control of the Doubly Fed Induction Generator

AU - Gao, Shuning

AU - Zhao, Haoran

AU - Gui, Yonghao

AU - Zhang, Zhenbing

AU - Qiuwei, Wu

PY - 2019/8

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N2 - In this paper, a Voltage Modulated Direct Power Control (VM-DPC) for doubly fed induction generator is proposed. The suggested method is implemented in the rotor reference frame, so that the phase-lock loop can be removed and relevant potential instability can be eliminated. The main advantage is that the proposed method has a relative simple structure compare to conventional Look-Up Table (LUT) DPC and sliding mode control (SMC), besides, it not only guarantees an enhanced transient performance but also keeps the steady-state harmonic spectra at the same level as voltage-oriented strategy. Finally, a simulation based on MATLAB/Simulink is provided to validate the performance of proposed VM-DPC strategy.

AB - In this paper, a Voltage Modulated Direct Power Control (VM-DPC) for doubly fed induction generator is proposed. The suggested method is implemented in the rotor reference frame, so that the phase-lock loop can be removed and relevant potential instability can be eliminated. The main advantage is that the proposed method has a relative simple structure compare to conventional Look-Up Table (LUT) DPC and sliding mode control (SMC), besides, it not only guarantees an enhanced transient performance but also keeps the steady-state harmonic spectra at the same level as voltage-oriented strategy. Finally, a simulation based on MATLAB/Simulink is provided to validate the performance of proposed VM-DPC strategy.

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Gao S, Zhao H, Gui Y, Zhang Z, Qiuwei W. A Voltage Modulated Direct Power Control of the Doubly Fed Induction Generator. In IEEE PES General Meeting. 2019. p. 1-5