Thermal-electrical analogy for simulations of superconducting power cables

Wescley Tiago Batista de Sousa, D. Kottonau, J. M. Pina, A. Morandi, M. Noe
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Abstract

Due the integration of superconducting technologies into electrical networks around the world, its precise simulations in power grids are increasingly becoming a desirable outcome. Over the years, sophisticated methods have been used to model superconducting power cables and, in this way, predict its behavior under different conditions. Most of the available models, however, are not advisable to be used and embedded in power system simulators. In this manuscript, we focus on the development of a method specifically for modelling superconducting cables in traditional power grid simulators. We start developing the model through a case example, within the basic concepts are introduced and later expanded to general cases. The model also incorporates the transient behavior of the cooling media, which is mandatory for such cables. It has been observed that the proposed model requires less computational effort and is able to deliver accurate results when compared to more advanced methods.
模拟超导电力电缆的热电类比法
随着超导技术融入全球电网,在电网中对其进行精确模拟正日益成为一种理想的结果。多年来,人们使用复杂的方法对超导电力电缆进行建模,从而预测其在不同条件下的行为。然而,大多数可用模型都不适合在电力系统模拟器中使用和嵌入。在本手稿中,我们将重点开发一种专门用于在传统电网模拟器中模拟超导电缆的方法。我们首先通过一个案例开发模型,介绍基本概念,然后扩展到一般情况。该模型还纳入了冷却介质的瞬态行为,这对此类电缆来说是必须的。据观察,与更先进的方法相比,所提出的模型所需的计算量更少,并能提供精确的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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