The Influence of Transformer Winding Connections on the Propagation of Voltage Sags
Влияние схемы соединения обмоток трансформатора на распространение провалов напряжения
2005-12-28
SCID: 54.1/rj2xj4n2
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11-kV distribution networkservice transformerssymmetrical and asymmetrical faultstransformer winding connectionsvoltage sags propagation
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Abstract (AI)
This paper presents the influence of different types of transformer winding connections on the propagation of voltage sags caused by symmetrical and asymmetrical faults in the power system. Single and multiple transformers are considered. A particular propagation of voltage sags from customer buses to industry facilities through the transformers employed at the entrance of the facilities is highlighted in the study. Different winding connections, dominantly used in the U.K. distribution networks, were modeled at the service transformers. The study was performed on a generic distribution network, and a bus from the 11-kV distribution network was randomly selected. It was found that the performance of voltage sags inside the industry facility is a function of transformer connections used at the service transformer.
Key Findings
1
Service transformers commonly used in U.K. distribution networks were modeled and shown to influence in-facility voltage sag performance.
2
The effect of winding connections on voltage sag propagation holds for both single and multiple transformer configurations.
3
Transformer winding connection type affects propagation of voltage sags caused by symmetrical and asymmetrical faults.
4
Voltage sag performance inside an industry facility is a function of the transformer connections used at the service transformer.
5
Voltage sags propagate from customer buses to industry facilities through service transformers, with propagation patterns depending on transformer connection.
Research Object
Transformer winding connections at service transformers in distribution networks
Research Subject
Their influence on the propagation of voltage sags (from customer buses to industrial facilities) caused by symmetrical and asymmetrical faults, including effects for single and multiple transformers
Publication Details
Publication Date
2005-12-28
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