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- W3128574609 abstract "Due to rapid urbanization, power demand is exponentially rising in the metro cities. In order to minimize the electrical power losses during transmission and distribution phase, it is always advantageous to set up the receiving end step down substation near the load center. Enhancement of urban boundary and concentrated electrical load demand in the middle of city, it is required to set up the step-down substation not only near the demand center but in the middle of the city. Setting up a HV substation in the middle of congested city, especially in a country like India, put forward novel changes for the transcom / discom. The space available is less for the newly proposed substation and existing substation are getting more loaded due to increasing demand. For the HV equipment manufacturer, this situation calls for optimizing the equipment design not only to reduce the footprint but also minimize the required ground clearances.This paper focused on step wise study to optimize the footprint of a three-phase high voltage surge arrester (HVSA) and minimize the ground clearance from the side by objects. HVSA is a critical equipment in a receiving end substation. HVSA is having its inherent design criticality, as it needs to offer the variable low resistance path in tandem with the insulation coordination of the system and bypass HV surges to ground. While reducing the footprint of the SA, thorough electric field analysis is essential to ensure the basic functionality of it. The current work presents an iterative approach to achieve a lesser footprint without compromising required field stress inside the ZnO block." @default.
- W3128574609 created "2021-02-15" @default.
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- W3128574609 date "2020-11-26" @default.
- W3128574609 modified "2023-09-23" @default.
- W3128574609 title "Space optimization for high voltage surge arrester" @default.
- W3128574609 doi "https://doi.org/10.1109/iciis51140.2020.9342657" @default.
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