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Insulation design of HTS transformer with the use of continuous transposed conductor

机译:采用连续换位导线的高温超导变压器的绝缘设计

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摘要

Important key technologies of a high-temperature superconducting (HTS) transformer may include the HTS wire technology, cooling, AC loss reduction, large current technology, and cryogenic temperature insulation. Among them, the cryogenic temperature insulation technology will be specifically a core technology for ensuring reliability for the smaller size, stability, economic efficiency of a HTS transformer. In this paper, we have simulated a HTS transformer applied with continuous transposed conductor, which has been studied as a way of reducing AC loss. Also, we analyzed the insulation composition and considered various characteristics of insulation breakdown in liquid nitrogen. Insulation design was realized in a way of calculating breakdown voltage of 0.1% with Weibull statistical treatment of the obtained experimental results and calculating insulation distance meeting basic impulse insulation level (BIL) 750 kV, a target voltage.
机译:高温超导(HTS)变压器的重要关键技术可能包括高温超导导线技术,冷却,减少交流损耗,大电流技术和低温温度绝缘。其中,低温绝热技术将特别是一种核心技术,可确保HTS变压器的较小尺寸,稳定性和经济效益的可靠性。在本文中,我们模拟了一种采用连续换位导体的高温超导变压器,已对其进行了研究,以减少交流损耗。此外,我们分析了绝缘成分,并考虑了液氮中绝缘击穿的各种特性。通过对获得的实验结果进行Weibull统计处理,计算出0.1%的击穿电压,并计算出满足750 kV基本脉冲绝缘水平(BIL)的目标电压的绝缘距离,从而实现绝缘设计。

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