측정 데이터 잡음 환경에서 B-spline 보간법을 이용한 전력계통 관성 계수의 추정 성능 향상

Improvement of the Estimation Performance of Power System Inertia Coefficients Using B-spline Interpolation in Noisy Measurement Data Environment

초록

The power system’s inertia coefficient is a metric that reflects the rotational inertia of the synchronous generator and measures the system’s ability to maintain frequency during disturbances. As the inertia of the power system decreases due to the expansion of renewable energy sources coupled with power electronics converters, the importance of system inertia has increased, and it becomes crucial for ensuring stable system operation. This paper introduces a method for estimating the power system inertia coefficient through the use of B-spline interpolation. B-spline interpolation method effectively captures local frequency data variations, resulting in an accurate point estimation of the inertia coefficient. Furthermore, this paper evaluates the accuracy and the precision of the proposed method by estimating the confidence interval of the inertia coefficient using the bootstrap method in statistics. Simulation results show that B-spline interpolation approach outperforms traditional polynomial fitting methods. Overall, the B-spline interpolation method provides a high level of accuracy and precision in determining the power system’s inertia coefficient.

키워드

Accuracy; B-spline interpolation; Confidence interval; Frequency stability; Measurement based inertia estimation; Polynomial interpolation; Power system inertia; Precision; Renewable energy source
제목
측정 데이터 잡음 환경에서 B-spline 보간법을 이용한 전력계통 관성 계수의 추정 성능 향상
제목 (타언어)
Improvement of the Estimation Performance of Power System Inertia Coefficients Using B-spline Interpolation in Noisy Measurement Data Environment
저자
김기훈; 김수배
발행일
2023-08
유형
Y
저널명
조명.전기설비학회논문지
권
37
호
4
페이지
26 ~ 33