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Probabilistic Power Flow Analysis of Bulk Power System for Practical Grid Planning Application
- Song, Sungyoon;
- Han, Changhee;
- Jung, Seungmin;
- Yoon, Minhan;
- Jang, Gilsoo
WEB OF SCIENCE
6SCOPUS
11초록
The sizes of PV power plants have grown in such a way that their effects on the power system can no longer be neglected. In order to address these issues, grid operators are forced to expand grid connection points, and a power flow analysis considering uncertain renewable generation is required. Thus, a modified probabilistic power flow (PPF) analysis for practical grid planning is suggested in this paper. The regularity and randomness of PV power are modeled by a Monte Carlo-based probabilistic model combining both k-means clustering and the kernel density estimation method. The certain cluster group is selected so as to reflect the severe PV generation scenario, and the chi-square test to represent the nth conservative network planning was suggested. In order to provide the power flow result more effectively, a mapping function of graphic representation based on a significant grid code violation is provided in an automatic PPF tool written by Python scripts. Following this procedure yields a reasonable network design for various renewable energy penetration levels.
키워드
- 제목
- Probabilistic Power Flow Analysis of Bulk Power System for Practical Grid Planning Application
- 저자
- Song, Sungyoon; Han, Changhee; Jung, Seungmin; Yoon, Minhan; Jang, Gilsoo
- 발행일
- 2019
- 유형
- Article
- 저널명
- IEEE Access
- 권
- 7
- 페이지
- 45494 ~ 45503