Adaptive Backward/Forward Sweep for Solving Power Flow of Islanded Microgrids

Citations

WEB OF SCIENCE

6
Citations

SCOPUS

8

초록

This paper presents an algorithm for solving the power flow (PF) problem of droop-regulated AC microgrids (DRACMs) operating in isolated mode. These systems are based on radial distribution networks without having a slack bus to facilitate conventional computations. Moreover, distributed generation units have to distribute the power and voltage regulation among themselves as a function of operating frequency and voltage droop rather than having a slack bus that regulates voltage and power demands. Based on the conventional backward/forward sweep algorithm (BFS), the proposed method is a derivative-free PF algorithm. To manage the absence of a slack bus in the system, the BFS algorithm introduces new loops, equations, and self-adaptation procedures to its computation procedures. A comparison is presented between the proposed BFS algorithm and other state-of-the-art PF algorithms, as well as PSCAD/EMTDC. In comparison to existing algorithms, the proposed approach is fast, simple, accurate, and easy to implement, and it can be considered an effective tool for planning and analyzing islanded DRACMs.

키워드

islanded AC microgrid; backward; forward sweep algorithm; distributed generation; self-adaptation; power flow; LOAD-FLOW; NEWTON-RAPHSON; ALGORITHM; COMPENSATION; MODEL
제목
Adaptive Backward/Forward Sweep for Solving Power Flow of Islanded Microgrids
저자
Kumar, Abhimanyu; Kumar, Abhishek; Mallipeddi, Rammohan; Lee, Dong-Gyu
DOI
10.3390/en15249348
발행일
2022-12
유형
Article
저널명
Energies
권
15
호
24