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Mathematical modelling of 3-phase induction motor to study the Torque vs. Speed characteristics using MATLAB Simulink

机译:三相感应电动机研究扭矩与速度特征的数学建模使用Matlab Simulink

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This paper presents the Torque vs. Speed characteristics of induction motor by mathematical modeling using SIMULINK. It has been observed that during the past three decades the use of induction motor has been increased due to its high efficiency and speed control. It plays a very important role in our daily life as well as in industry because of its low maintenance cost, reliable operation, robustness and simple construction. Dynamic model is generally used to study the steady state and transient behavior of induction motor. This paper presents the mathematical model of an induction motor using the Clarkes transformation (aPy transformation) of stator and rotor parameters on reference frame. First of all, the mechanical equations for speed and torque are stated. It also models the differential equation of voltages, currents and flux linkage between the stationary stator and moving rotor. According to that equations state space matrix is implemented. Then a mathematical model is developed using SIMULINK. This model is generally used to study the variation in parameters value on the dynamic performance of the induction motor.
机译:本文介绍了使用Simulink的数学建模扭矩与感应电动机的速度特性。已经观察到,在过去三十年中,由于其高效率和速度控制,使用感应电机的使用已经增加。它在我们的日常生活中以及行业中发挥着非常重要的作用,因为它的维护成本低,操作可靠,稳健性和简单的结构。动态模型通常用于研究感应电动机的稳态和瞬态行为。本文介绍了在参考框架上的定子和转子参数的克拉内转换(APY变换)的感应电动机的数学模型。首先,阐述了速度和扭矩的机械方程。它还模拟了固定定子和移动转子之间的电压,电流和磁通连杆的微分方程。根据该等式,实现了状态空间矩阵。然后使用Simulink开发数学模型。该模型通常用于研究参数值对感应电动机的动态性能的变化。

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