인문학
사회과학
자연과학
공학
의약학
농수해양학
예술체육학
복합학
지원사업
학술연구/단체지원/교육 등 연구자 활동을 지속하도록 DBpia가 지원하고 있어요.
커뮤니티
연구자들이 자신의 연구와 전문성을 널리 알리고, 새로운 협력의 기회를 만들 수 있는 네트워킹 공간이에요.
논문 기본 정보
- 자료유형
- 학술저널
- 저자정보
- 발행연도
- 2026.4
- 수록면
- 154 - 162 (9page)
- DOI
- 10.6113/TKPE.2026.31.2.154
이용수
초록· 키워드
Most rectifiers that operate with AC grid voltages assume that the voltage is ideal and free from distortion. However, in high-power systems, such as water electrolysis system, the effect of grid impedance is significant, as it can distort the grid voltage. These conditions are referred to as a weak grid. In a weak grid, the p oint of the common coupling voltage can be further distorted because of the how PWM switching frequency of high-power rectifiers. This distortion may cause phase errors in voltage measurements, hindering accurate voltage detection. Two common methods can be used to mitigate distortion. The first method uses a hardware low-pass filter (LPF) to reduce high-frequency switching noise. The second method uses a phase-locked loop (PLL) based on the second-order generalized integrator (SOGI) to separate the distortion components. Although these two methods are widely used, their performance can vary depending on how they are applied. In this study the size and phase error compensation of the hardware LPF caused by the low PWM switching frequency of high-power converters and the voltage error generated in digitally implemented SOGI-PLLs are comparatively analyzed according to discrete implementation methods. The validity of their designs is verified via hardware-in-the-loop simulation experiments.
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목차
- Abstract
- 1. 서론
- 2. 약계통에서 비엔나 PWM 정류기 PCC 전압 모델링
- 3. 약계통에서 SOGI-PLL의 동작 및 디지털 변환 분석
- 4. 실험 결과
- 5 결론
- References