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Ageing and reliability of electrical insulation: the risk of hybrid AC/DC grids

机译:电气绝缘老化和可靠性:混合交流/直流网格的风险

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摘要

With an impetuous growth of DC links and future grids that will be often hybrid, providing AC and DC supply to nearby or the same customer, an important element is often neglected, that is, electrical insulation. There are no doubts that overhead lines will step back compared to insulated cables, for known reasons of environmental impact, right of way and reliability, especially in an urban or harsh environment. On the other hand, while AC insulation systems have been investigated and used for decades, there is no analogue experience for DC polymeric insulation, nor for insulation systems subjected to power electronics supply. This study aims at enhancing the attention on this topic, focusing on insulation ageing mechanisms and models of relevance for hybrid AC/DC assets and grids. Ageing and life models for AC, DC and power electronics supply are discussed and compared to experimental data, focusing on partial discharge and space charge. It is shown how these two phenomena affect lifetime for different AC, DC and transient operating conditions. The main drivers for insulation design and material selection are discussed, showing that insulation reliability can be achieved only if operating stresses, ageing mechanisms and life models are known and accounted for properly by insulation designers.
机译:随着直流链路和未来网格的浮躁,将经常混合,向附近或同一客户提供交流和直流电源,通常忽略了一个重要的元素,即电绝缘。由于已知的环境影响,途径,可靠性,特别是在城市或恶劣环境中,与绝缘电缆相比,架空线路与绝缘电缆的原因没有疑问。另一方面,在几十年来研究并使用了交流绝缘系统,没有用于直流聚合物绝缘的模拟体验,也没有模拟体验,也没有用于经受电力电子供应的绝缘系统。本研究旨在提高对该主题的关注,重点关注混合AC / DC资产和网格的绝缘老化机制和相关性。讨论了AC,DC和电力电子供应的老化和寿命模型与实验数据相比,专注于局部放电和空间电荷。显示这两种现象如何影响不同的AC,DC和瞬态操作条件的寿命。讨论了用于绝缘设计和材料选择的主要驱动器,表明只有在经营应力,老化机构和寿命模型都是已知的并且通过绝缘设计者正确地占据了绝缘可靠性。

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