LCC高压直流系统中HPTE挤压电缆极性反转性能

M. Albertini, S. Cotugno, Davide Pietribiasi, C. Rémy
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引用次数: 2

摘要

本文第一部分从电缆系统的角度介绍了线路整流变换器(LCC)和电压源变换器(VSC)在工作上的主要区别。由于lcc通过将直流电压极性反转来实现功率反转,因此提醒了在这种情况下电缆绝缘电应力计算的一般理论以及对挤压电缆造成严重应力的主要原因。第二部分介绍了新型高性能热塑性弹性体(HPTE)挤压材料的发展。这种材料具有优越的电气和热特性,这将允许在LCC系统内使用挤压电缆。本文首次介绍了在525kV以下不同电压水平下成功进行的几次极性反转试验。测试结果应用于一个案例研究,其中HPTE电缆设计用于高达2gw的LCC应用。
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HPTE Extruded Cables Polarity Reversals Performance in LCC HVDC Systems
The first part of the paper introduces the main operational differences, from a cable system perspective, between line commutated converter (LCC) and voltage source converter (VSC). As LCCs perform power reversal by inverting the DC voltage polarity, the general theory for cable insulation electrical stress calculation in this condition and the main reasons why it is a severe stress for extruded cables are reminded. In the second part, the development of the innovative High-Performance Thermoplastic Elastomer (HPTE) extruded material is introduced. This material presents superior electrical and thermal characteristics which will allow the use of extruded cables inside LCC systems. Several polarity reversal tests have been successfully carried out at different voltage levels up to 525kV and are presented in this paper for the first time. The test results are applied to a case study, where an HPTE cable is designed for an LCC application up to 2 GW.
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