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비대칭 영전압 스위칭 상태를 이용한 다단 H-브릿지 멀티레벨 인버터의 개방성 스위치 고장 진단 방법

A Detection Method for an Open-Switch Fault in Cascaded H-bridge Multilevel Inverters using Asymmetric Zero-Voltage Switching State

초록/요약

This paper presents a detection method for an open-switch fault in cascaded H-bridge multilevel inverters. Recently, cascaded H-bridge multilevel inverters (CHMIs) are widely used in high power systems. Therefore, the reliability of this topology has become an important factor. To improve the reliability, detecting methods for an open-switch fault are required. The proposed method is based on the current path analysis according to zero-voltage switching states. The location of both faulty cells switches can be detected by the current waveform and zero-voltage switching states. This method is applicable when using the level-shifted PWM that is commonly used for a modulation method in CHMIs. The performance of proposed detecting method is verified by simulation and experimental results.

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목차

제 1 장 서론 ........................................................................................................................................ 1
제 2 장 영전압 스위칭 상태에 따른 전류 경로 ................................................................. 4
2.1 스위칭 방식 .......................................................................................................................... 4
2.2 영전압 스위칭 상태 .......................................................................................................... 5
2.3 개방성 고장에 따른 전류 경로분석 .......................................................................... 7
제 3 장 제안하는 스위치 고장 검출 방법 ........................................................................... 11
3.1 비대칭 영전압 스위칭상태 인가 ............................................................................... 11
3.2 전류의 기울기를 활용한 검출 방법 ........................................................................ 13
3.3 셀 간 로테이션을 고려한 LS-PWM 적용 .............................................................. 13
제 4 장 시뮬레이션 ......................................................................................................................... 16
제 5 장 실험 ...................................................................................................................................... 22
제 6 장 결론 ...................................................................................................................................... 29
참고문헌 ................................................................................................................................................ 30

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