基于符号辅助计算的非线性电力系统部件建模

E. Solodovnik, G. Cokkidnides, R. Dougal, A. Meliopoulos
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引用次数: 9

摘要

提出了一种利用符号辅助计算自动构建时域电力系统部件模型的新方法。生成的模型是代数伴生形式(ACF)。ACF是在时域模拟器中广泛应用的电阻伴随形式的一种推广。它基于跨/通过变量关系的二次表示,从而提高了鲁棒性和计算效率,特别是对于大规模非线性系统应用。手工构建ACF模型非常耗时,因为它需要计算所有through变量相对于所有跨变量的一阶和二阶偏导数。使用自动分化技术(ADT)简化了这项任务。该建模工具已在虚拟试验台(VTB)仿真环境中实现。VTB是一个交互式仿真环境,允许对混合学科系统进行分析,并提供先进的可视化功能。ADT模型允许用户通过输入表示通过变量相对于交叉变量的连续域微分方程,轻松生成自己的高效VTB模型。为了演示所提出的方法,给出了几个ADT生成的ACF模型的例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear power system component modeling using symbolically assisted computations
A new technique has been developed that uses symbolically assisted computations to automatically construct time domain power system component models. The generated models are in the algebraic companion form (ACF). The ACF is a generalization of the resistive companion form that is widely used in time-domain simulators. It is based on a quadratic representation of the across/through variable relationship, which results in improved robustness and computational efficiency especially for large scale nonlinear system applications. Manual construction of ACF models is time consuming since it requires computation of both first and second partial derivatives of all through variables with respect to all across variables. This task is simplified using the automatic differentiation technique (ADT). This modeling tool has been implemented within the virtual test bed (VTB) simulation environment. The VTB is an interactive simulation environment which allows analysis of mixed discipline systems and provides advanced visualization capabilities. The ADT models allows users to easily generate their own efficient VTB models by just typing in the continuous domain differential equations expressing the through variables with respect to the across variables. In order to demonstrate the presented methodology, several examples of ADT generated ACF models are presented.
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