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Optimal Design of Spacer for High Voltage Gas Insulated Switchgear

机译:高压气体绝缘开关装置的垫片优化设计

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This study describes the optimal design of 3 phase epoxy spacer to improve the electrical and mechanical performance of high voltage Gas Insulated Switchgear (GIS). Epoxy spacer is one of the significant components in GIS, functioning as supporting conductor, compartmentalizing GIS into separated units and insulating between conductor and enclosure of GIS. With the need of compact-sized GIS and higher gas pressure in GIS, electrical safety as well as mechanical reliability of epoxy spacer should be taken into account. Especially in case of 3 phase spacer, it is more complicated to obtain robust design because both phase-to-phase and phase-toearth insulation should be considered. In this paper, threedimensional finite element analysis is applied to calculate electric field and mechanical stress. A (μ+λ) Evolution Strategy (ES) is employed as optimization method. Design variables of epoxy spacer are selected for minimizing the maximum electric field strength and maximum mechanical stress on the spacer. Finally, optimal solutions for spacer is obtained and compared with the results of the prototypes.
机译:本研究描述了3相环氧垫片的最佳设计,以提高高压气体绝缘开关设备(GIS)的电气和力学性能。环氧树脂间隔物是GIS中的重要组成部分之一,作为支撑导体,将GIS分离成分离的单元和导体之间的绝缘和GIS之间的绝缘。在GIS中需要紧凑的GIS和更高的气体压力,应考虑环氧树脂间隔物的电气安全性以及机械可靠性。特别是在3相间隔物的情况下,获得稳健的设计更复杂,因为应考虑相位相对相位和相位 - 开胃绝缘。本文应用了三维有限元分析来计算电场和机械应力。 a(μ+λ)演化策略(ES)被用作优化方法。选择环氧树脂间隔物的设计变量,以使最大电场强度和间隔物上的最大机械应力最小化。最后,获得了用于间隔物的最佳解决方案,并与原型的结果进行比较。

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