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Analyzing temporary overvoltage by the non-islanding operation of distributed generation in multi-grounded neutral distribution system
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Publication Year
2022-05-01
Publisher
Elsevier Ltd
Citation
International Journal of Electrical Power and Energy Systems, Vol.137
Keyword
DG locationDistributed generationInterconnection transformerNeutral grounding resistorTemporary overvoltage
Mesh Keyword
Distributed generation locationDistribution systemsGeneration typesGrounding resistorInterconnection transformerIslanding operationsNeutral groundingNeutral grounding resistorTemporary overvoltagesTransformer types
All Science Classification Codes (ASJC)
Energy Engineering and Power TechnologyElectrical and Electronic Engineering
Abstract
Effective grounding has been applied to mitigate the temporary overvoltage (TOV) caused by the non-islanding operation of distributed generation (DG). Although effective grounding is applied, the TOV can still exceed the allowable voltage defined by the effective grounding. However, previous works did not represent the main contribution of the TOV. Therefore, this study analyzes the characteristics of TOVs caused by the non-islanding operation of DG in an effectively grounded distribution system. Then, it analyzes whether the TOVs can be mitigated by applying a neutral grounding resistor (NGR), which is a practical approach in terms of utility. Consequently, a methodology to calculate the TOVs is introduced. Based on the methodology, the characteristics of total TOVs caused by transformer type, DG type, and DG location were analyzed during the non-islanding operation of DG in an effectively grounded distribution system. Finally, it investigates whether the total TOVs can be lowered by applying an NGR. Thus, this study can provide effective guidelines to determine and mitigate the TOVs caused by the non-islanding operation of DG, enabling the reliable operation of distribution systems with DG.
ISSN
0142-0615
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/32431
DOI
https://doi.org/10.1016/j.ijepes.2021.107822
Fulltext

Type
Review
Funding
This work is financially supported by Korea Ministry of Environment (MOE) as 「Graduate School specialized in Climate Change」.This research was supported by Korea Electric Power Corporation (Grant number: R21XO01-38 ).
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Jung, Jaesung  Image
Jung, Jaesung 정재성
Department of Electrical and Computer Engineering
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