基于XTAP的鼠笼式感应电机的VBR建模方法

O. Sakamoto, K. Ishii
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引用次数: 3

摘要

由于当前对智能电网的要求,电力的高效利用,包括用电力电子设备控制电机变得非常重要。为了在类似于实际电力系统的情况下验证控制效果,电磁暂态分析软件是非常有用的。在电力系统EMT分析中,旋转机械的建模方法对分析的精度和效率影响很大。本文提出了一种新的鼠笼型感应电机模型,用于XTAP作为初级绕组漏抗(VBR)模型后的电压源。该方法的显著特点是计算过程采用两阶段对角隐式龙格-库塔法(2S-DIRK)、二阶龙格-库塔法(RK2)和αβ和dq变换,无需任何预测。该方法通过使用RK2明确地限制了计算误差,从而提高了瞬态分析(包括旋转机械的瞬态分析)的数值稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new VBR modeling of squirrel-cage induction machine for power system analysis with XTAP
Owing to the recent requirement for smart grids, the efficient utilization of electric power including motor control with power electronics apparatus has become important. To verify control effect under conditions similar to those of a real power system, electromagnetic transient (EMT) analysis software is very useful. In the EMT analysis of power systems, the modeling method used for rotating machines has a large impact on the accuracy and efficiency of the analysis. In this paper, a new squirrel-cage induction machine model for XTAP as a voltage source behind the primary winding leakage reactance (VBR) model is proposed. The noteworthy feature of the method is the calculation procedure using a two-stage diagonally implicit Runge-Kutta (2S-DIRK) method, second-order Runge-Kutta method (RK2), and αβ and dq transformations without any prediction. This approach is considered to enhance the numerical stability of transient analyses including those of rotating machines by explicitly limiting the calculation errors through the use of RK2.
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