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- W4386768306 abstract "Whether using an alternating current (AC) or direct current (DC) electrical system, a Gas-Insulated Substation (GIS) is necessary for power transmission and regulation. In order to lower electric stress in the GIS, functionally graded material (FGM) technology is commonly employed in the design of the spacer material. It is possible that stress in the GIS may be reduced at an efficient cost if the material of the spacer gradings was designed optimally, with special emphasis paid to the quantity of gradings. An ideal dielectric material for the FGM spacer in a GIS has been proposed in this study, and its design and development are discussed. The conductor material and the FGM epoxy spacer are optimized using a novel suggested optimization approach. Using the proposed method, the best possible value for each FGM spacer grade may be calculated. The optimization problem is set up to maximize a pair of objectives. Specifically, we want to find a solution that reduces both the maximum field stress and the average value of the electric field. In the research, a spacer of the post-variety has been considered. At first, only four grades of the dielectric material are optimized. Step by step improves the FGM-gradation spacer's count allows us to zero on the best possible range for this particular application." @default.
- W4386768306 created "2023-09-16" @default.
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- W4386768306 date "2023-01-01" @default.
- W4386768306 modified "2023-09-27" @default.
- W4386768306 title "Optimization of Dielectric Material and Gradings of the Post-type FGM Spacer for a Multi-Objective Function" @default.
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- W4386768306 doi "https://doi.org/10.1007/978-981-99-4175-9_13" @default.
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