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A Phase-Domain Synchronous Machine Model With Constant Equivalent Conductance Matrix for EMTP-Type Solution

机译:具有恒定等效电导矩阵的EMTP型解决方案的相域同步电机模型

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摘要

Interfacing machine models in either nodal analysis-based (EMTP-like) or state variable-based transient simulation programs play an important role in numerical accuracy and computational performance of the overall simulation. As an advantageous alternative to the traditional qd models, a number of advanced phase-domain (PD) and voltage-behind-reactance machine models have been recently introduced. However, the rotor-position-dependent conductance matrix in the machine-network interface complicates the use of such models in EMTP. This paper focuses on achieving constant and efficient interfacing circuit for the PD synchronous machine model. It is shown that the machine conductance matrix can be formulated into a constant submatrix plus a time-variant submatrix. Eliminating numerical saliency from the second term results in a constant conductance matrix of the proposed PD model, which is a very desirable property for the EMTP solution since the refactorization of the network conductance matrix at every time step is avoided. Case studies demonstrate that the proposed PD model represents a significant improvement over other established models used in EMTP while preserving the accuracy of the original/classical PD model.
机译:基于节点分析(类似于EMTP)或基于状态变量的瞬态仿真程序中的接口机器模型在整体仿真的数值精度和计算性能中起着重要作用。作为传统qd模型的有利替代方案,最近引入了许多高级相域(PD)和电压落后电抗机模型。但是,机器网络接口中与转子位置有关的电导矩阵使EMTP中此类模型的使用变得复杂。本文着重于为PD同步电机模型实现恒定有效的接口电路。结果表明,机器电导矩阵可以表示为一个常数子矩阵加上一个时变子矩阵。从第二项中消除数值显着性会导致所提出的PD模型的电导矩阵恒定,这对于EMTP解决方案是非常理想的属性,因为避免了在每个时间步长对网络电导矩阵进行重构。案例研究表明,所提出的PD模型相对于EMTP中使用的其他已建立模型具有显着改进,同时保留了原始/经典PD模型的准确性。

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