A calculation method for the short-circuit current contribution of current-control inverter-based distributed generation sources at balanced conditions

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초록

When a grid-connected inverter-based distributed generation (IBDG) source behaves as a current source that limit its magnitude in current loop control, the contribution from the inverter to the short-circuit current (SCC) not as significant as those from conventional synchronous generators. However, the increased IBDG sources change the magnitude and phase angle of the SCC, so they should not be ignored in SCC calculation. objective of this study is to present a method for calculating the SCC of an IBDG source of acting as an internally either limited or unlimited current source at balanced conditions. For this purpose, negativeand zero-sequence networks are transferred to a positive-sequence network with balanced IBDG sources. Subsequently, SCCs zero-, negative-, and positive-sequence induced voltage are determined by using zeroand negative-sequence current injection matrices. Then, new SCC calculation equations for a single line-to ground, line-to-line ground, line-to-line, or three-phase fault are also derived. As a result, the proposed method improves the conventional method in terms of taking the contribution from a balanced IBDG source to SCC into account.

키워드

Bus-impedance matricesCurrent-injection matricesBalanced inverter-based distributed generationShort-circuit currentShort-circuit voltageFAULT ANALYSIS
제목
A calculation method for the short-circuit current contribution of current-control inverter-based distributed generation sources at balanced conditions
저자
Kim, Insu
DOI
10.1016/j.epsr.2020.106839
발행일
2021-01
유형
Article
저널명
Electric Power Systems Research
190