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      Active Filter Using WRIM with Flywheel Based on Voltage Source SVM Control

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      https://www.riss.kr/link?id=A3007643

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      다국어 초록 (Multilingual Abstract)

      Various sources including DC power source generate harmonic components in power system. As one of approaches to compensate harmonic current generated in power network system, this paper presents a harmonic compensation system using wound rotor induction machine (WRIM). The primary side current is controlled by excitation of the secondary side of the WRIM. To control the secondary excitation current the hysteresis control is often used. However this control scheme has disadvantages in high switching frequency and variable switching frequency. In this paper, a control scheme based on voltage source space vector modulation technique is designed. The designed control scheme is verified through experiments.


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      Various sources including DC power source generate harmonic components in power system. As one of approaches to compensate harmonic current generated in power network system, this paper presents a harmonic compensation system using wound rotor inducti...

      Various sources including DC power source generate harmonic components in power system. As one of approaches to compensate harmonic current generated in power network system, this paper presents a harmonic compensation system using wound rotor induction machine (WRIM). The primary side current is controlled by excitation of the secondary side of the WRIM. To control the secondary excitation current the hysteresis control is often used. However this control scheme has disadvantages in high switching frequency and variable switching frequency. In this paper, a control scheme based on voltage source space vector modulation technique is designed. The designed control scheme is verified through experiments.


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      목차 (Table of Contents)

      • 1.Introduction
      • 2.System Configuration
      • 3.Primary current control of WRIM
      • 3.1 D,Q model of WRIM
      • 3.2 Current Vector control of WRIM
      • 1.Introduction
      • 2.System Configuration
      • 3.Primary current control of WRIM
      • 3.1 D,Q model of WRIM
      • 3.2 Current Vector control of WRIM
      • 4.Main circuit and Control algorithm
      • 5.Experimental Results
      • 6.Conclusion
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