메뉴 건너뛰기
.. 내서재 .. 알림
소속 기관/학교 인증
인증하면 논문, 학술자료 등을  무료로 열람할 수 있어요.
한국대학교, 누리자동차, 시립도서관 등 나의 기관을 확인해보세요
(국내 대학 90% 이상 구독 중)
로그인 회원가입 고객센터 ENG
주제분류

추천
검색
질문

논문 기본 정보

자료유형
학술대회자료
저자정보
Shengbo Wang (Harbin Institute of Technology) Binbin Li (Harbin Institute of Technology) Zigao Xu (Harbin Institute of Technology) Xiaodong Zhao (Harbin Institute of Technology) Dianguo Xu (Harbin Institute of Technology)
저널정보
전력전자학회 ICPE(ISPE)논문집 ICPE 2019-ECCE Asia
발행연도
2019.5
수록면
3,265 - 3,270 (6page)

이용수

표지
📌
연구주제
📖
연구배경
🔬
연구방법
🏆
연구결과
AI에게 요청하기
추천
검색
질문

초록· 키워드

오류제보하기
Power hardware in the loop (PHIL) simulation is an attractive option for power system testing, as it combines the benefits of real-time digital simulation and physical experiments. In view of the fact that only systems with pure resistance have been considered in previous literatures, this paper presents a systematic and comprehensive approach to evaluating stability of different types of impedance. A rigorous stability criterion of a PHIL system based on the ideal transformer interface model which utilizes Nyquist stability criterion is introduced in this paper. Phase lag caused by delay time in the PHIL system is considered to be the essential cause of instability and in terms of Nyquist criterion, relative positions of the starting and ending points of the Nyquist curve completely determine stability conditions. Effectiveness of the proposed stability criterion is verified by experimental results conducted by RT-LAB.

목차

Abstract
I. INTRODUCTION
II. SYSTEM MODELING AND TRADITIONAL STABILITY CRITERION
III. NOVEL STABILITY CRITERION FOR PHIL SYSTEM
IV. EXPERIMENTAL VERIFICATION
V. CONCLUSION
REFERENCES

참고문헌 (0)

참고문헌 신청

함께 읽어보면 좋을 논문

논문 유사도에 따라 DBpia 가 추천하는 논문입니다. 함께 보면 좋을 연관 논문을 확인해보세요!

이 논문의 저자 정보

최근 본 자료

전체보기

댓글(0)

0