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首页> 外文期刊>IEEE Transactions on Power Delivery >Duality Derived Transformer Models for Low-Frequency Electromagnetic Transients—Part I: Topological Models
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Duality Derived Transformer Models for Low-Frequency Electromagnetic Transients—Part I: Topological Models

机译:低频电磁暂态的对偶衍生变压器模型—第一部分:拓扑模型

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The objective of this two-part paper is to provide clarity to physical concepts used in the field of transformer modeling, to dispel common misconceptions regarding numerical instabilities, and to present unified modeling techniques for low-frequency transients. This paper focuses on proper modeling of nonlinearities (magnetizing branches) since these components are critical to determine the low-frequency behavior. A good low-frequency model should properly represent: normal operation, inrush currents, open and short circuit, out-of-phase synchronization transient of step-up transformers, geomagnetic-induced currents, ferroresonance, and harmonics. This paper discusses the derivation of electrical dual models from the equivalent (magnetic) reluctance networks and the direct application of the principle of duality. It is shown that different dual models need to be derived for different transformer geometries and the advantages and disadvantages of each method are discussed. This paper also compares double-sided versus single-sided dual models, and shows that the double-sided model is a more general approach. The mathematical equivalency of several leakage models (negative inductance, mutual coupling, and BCTRAN) is demonstrated for three-winding transformers. It is also shown that contrary to common belief, a negative inductance is not the source of numerical oscillations, but they occur due to the use of noncorrect topological models for representing the core.
机译:这份由两部分组成的文章旨在澄清变压器建模领域中使用的物理概念,消除有关数值不稳定性的常见误解,并提出针对低频瞬变的统一建模技术。本文将重点放在对非线性(磁化分支)的正确建模上,因为这些分量对于确定低频行为至关重要。一个好的低频模型应该正确地代表:正常运行,浪涌电流,开路和短路,升压变压器的异相同步瞬变,地磁感应电流,铁磁谐振和谐波。本文讨论了从等效(磁)磁阻网络推导电对偶模型以及对偶原理的直接应用。结果表明,需要针对不同的变压器几何形状推导不同的对偶模型,并讨论了每种方法的优缺点。本文还比较了双面模型和单面模型,并且表明双面模型是一种更通用的方法。对于三绕组变压器,证明了几种泄漏模型(负电感,互耦和BCTRAN)的数学等效性。还表明,与通常的看法相反,负电感不是数值振荡的源头,而是由于使用了不正确的拓扑模型来表示磁芯而发生的。

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