具有同步状态空间节点求解器的电力系统先进实时电磁模拟器

C. Dufour, J. Mahseredjian, J. Bélanger, J. L. Naredo
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引用次数: 31

摘要

提出了一种将状态空间分析与节点法相结合的电力系统仿真方法。本文将节点方法的离散伴分支等效概念扩展到状态空间描述系统,并实现了它们之间的自然耦合。将状态空间描述的电气子系统柔性聚类为节点方法具有以下优点:首先,节点导纳矩阵的大小可以受到限制,同时仍然允许通过节点导纳矩阵在线三角化求解交换网络。此外,每个组可以预先计算其内部的所有内部模式(例如由开关引起的),这是实时应用程序的一个重要特性。其次,状态空间公式允许使用具有l稳定性质的更高级别离散化方法。最后,该方法能够将复杂的基于节点的模型(如FD-line)耦合到基于状态空间的求解器中。该方法在商业实时仿真软件工具-先进实时电磁模拟器(ARTEMiS)中实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Advanced Real-Time Electro-Magnetic Simulator for power systems with a simultaneous state-space nodal solver
This paper presents a simulation method that combines state-space analysis with a nodal method for the simulation of electrical systems. This paper extends the concept of a discrete companion branch equivalent of the nodal approach to state-space described systems, and enables natural coupling between them. The flexible clustering of state-space described electrical subsystems into a nodal method has the following advantages: first, the nodal admittance matrix can be constrained in size while still permitting the solution of a switched network by nodal admittance matrix on-line triangularisation. Also, each group can have a precalculation of all internal modes (caused by switches, for example) within itself, an important feature for real-time applications. Secondly, the state-space formulation enables the use of higher-level discretization methods with L-stability properties. Finally, the approach enables the coupling of complex nodal-based models like FD-line into a state-space based solver. The method is implemented in a commercial real-time simulation software tool, the Advanced Real-Time Electro-Magnetic Simulator (ARTEMiS).
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