Development of stability charts for double salience reluctance machine modeled using hill’s equation

E. A. Yahaya, E. Ejiogu
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Abstract

The paper presents a novel algorithm for the development of stability charts. The second-order differential homogeneous equation describing a double salient reluctance machine with a capacitance connected to its stator winding is transformed into hill’s equation. The circuit components are the stator coil time-varying inductance of a double salient reluctance machine, capacitance and resistance. All these are modeled by hill’s equation. The double salient reluctance machine acts as an energy conversion system. The maximum and minimum inductance of the energy conversion system is measured in laboratory by inductance, capacitance, and resistance (LCR) meter. These values help to determine the inductance modulation index. The inductance modulation indetx, the characteristic constant and the characteristic parameter obtained from modeling equations are used in the MATLAB/Simulink model. The MATLAB/Simulink simulations generate stable and unstable oscillations to form stability charts. The proposed stability charts are in good agreement with the Ince-Stritt stability chart, which is widely applied in physics, mechanics and in electrical engineering, especially where the state of stability of a system or an electric oscillatory circuit is to be determined.
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利用希尔方程建立双突出磁阻机模型的稳定性图表
本文提出了一种用于绘制稳定图的新算法。描述定子绕组连接电容的双磁阻机的二阶微分均质方程被转化为希尔方程。电路元件包括双磁阻机定子线圈时变电感、电容和电阻。所有这些都用希尔方程建模。双摆幅磁阻机是一个能量转换系统。能量转换系统的最大和最小电感值是在实验室用电感、电容和电阻(LCR)计测量的。这些数值有助于确定电感调制指数。MATLAB/Simulink 模型中使用了从建模方程中获得的电感调制指数、特性常数和特性参数。MATLAB/Simulink 仿真产生稳定和不稳定振荡,形成稳定图。所提出的稳定图与 Ince-Stritt 稳定图非常吻合,后者广泛应用于物理学、力学和电气工程领域,尤其是需要确定系统或电气振荡电路稳定状态的领域。
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