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Multi-scale formulation of admittance-based modeling of cables

机译:基于导纳的电缆建模的多规模制剂

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摘要

This paper proposes a novel multi-scale cable model in phase-coordinates exploiting the fully-coupled structure of the nodal admittance matrix instead of using the conventional approach based on the Method of Characteristics (MoC). The usage of the admittance modeling allows a straightforward representation of cables regardless of their lengths as it does not require a minimum time-step below the transient time associated with the fastest mode. In addition, some accuracy issues regarding the rational modeling of the nodal admittance matrix are overcome resorting to the Folded Line Equivalent (FLE) transformation.Following the so-called frequency-adaptive simulation of transients (FAST) concept, the trapezoidal rule and recursive convolution expressions are rewritten to perform computations using analytic signals or complex variables. This will allow the possibility to combine electromagnetic and electromechanical trasients phenomena in the same simulation environment with a unique mathematical model.A novel variable time-step algorithm is presented and its flexibility is so general that can be incorporated in Electromagnetic Transient (EMT) software such as EMTP-RV, PSCAD or Hypersim in straightforward way.Besides keeping the accuracy of the classic EMT-modeling, the proposed formulation provides a sensible gain in the overall computation time without significant loss of accuracy and also smooth transitions regardless of the time-step length.
机译:本文提出了一种新型多尺度电缆模型,用于利用基于特性方法(MOC)的节点导纳矩阵的全耦合结构而利用常规方法(MOC)。导纳建模的使用允许电缆的直接表示,无论它们的长度如何,因为它不需要低于与最快模式相关联的瞬态时间的最小时间步骤。此外,关于节点进入矩阵的合理建模的一些准确性问题是克服折叠线等同(FLE)转换的克服。突出的瞬态(快)概念,梯形规则和递归卷积的所谓频率自适应模拟表达式被重写为使用分析信号或复杂变量执行计算。这将允许在具有唯一数学模型中结合相同模拟环境中的电磁和机电初始化现象的可能性。提出了新的可变时阶段算法,其灵活性是如此,可以结合在电磁瞬态(EMT)软件中作为EMTP-RV,PSCAD或Hypersim直接的方式。基于经典EMT建模的准确性,所提出的配方在整个计算时间提供了明智的增益,而无论时间步骤如何,也会在整体计算时间内进行显着损失,并且不管时间步骤如何平滑过渡。长度。

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