Keywords
admittance of inter-harmonic sources to ground, parallel resonance analysis, modal analysis, sensitivity analysis
Abstract
The admittance amplitude of inter-harmonic sources to ground is very small, so traditional parallel resonance analysis generally ignores the admittance of inter-harmonic sources to ground. However, if the admittance of inter-harmonic sources to ground has a greater influence on the parallel resonance to a high degree, ignoring the admittance of inter-harmonic sources to ground couldseriously reduce the accuracy of the parallel resonance analysis results.In order to prove the necessity of the parallel resonance analysis to include the admittance of inter-harmonic sources to ground, this paper establishes a parallel resonance test system based on the IEEE-33 nodes distribution network model, and carries out the research on the influence of admittance of inter-harmonic sources to ground on the parallel resonance of distribution network.Based on the modal analysis method, it is found that the admittance of inter-harmonic sources to ground at a specific node can significantly affect the parallel resonance. Through sensitivity analysis, it is found that the admittance imaginarypart of inter-harmonic sources to ground at a specific node has a greater influence on the high degree to the parallel resonance, which revealsthe reason why the admittance of inter-harmonic sources to ground can obviously affect the parallel resonance, and finally validatesthe necessity of including the admittance of inter-harmonic sources to ground in the parallel resonance analysis of distribution network.
DOI
10.19781/j.issn.1673-9140.2022.03.011
First Page
94
Last Page
101
Recommended Citation
LI, Boqiang; LIU, Kaipei; LIN, Yan; PENG, Yajie; HUANG, Daoshan; LIN, Fang; and QIN, Liang
(2022)
"Research on influence of admittance of inter-harmonic sources to ground on parallel resonance of distribution network,"
Journal of Electric Power Science and Technology: Vol. 37:
Iss.
3, Article 11.
DOI: 10.19781/j.issn.1673-9140.2022.03.011
Available at:
https://jepst.researchcommons.org/journal/vol37/iss3/11