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Integrative simulation and analysis of induction motor and control system

机译:感应电动机与控制系统的集成仿真与分析

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Integrative modeling and simulation method for induction motor and its control system is presented. The integrative model combines induction motor finite element model and control circuit model together in an integrative simulation platform and considers the coupling effect of the two parts in calculation. The motor stator current, motor electromagnetic torque and speed waves of integrative simulation are analyzed and compared with that of non-integrative simulation, including single control system model simulation in Simulink without motor's electromagnetic field finite element analysis and single induction motor model simulation in Maxwell without precise control strategy. It has proved that the integrative simulation reflects practical performance condition of induction motor, and the results meet the engineering accuracy requirement as well. Meanwhile, the method could further be used to resolve the practical running problems and optimize motor design.
机译:提出了感应电动机及其控制系统的集成建模与仿真方法。该集成模型在一个集成仿真平台中将感应电动机的有限元模型和控制电路模型结合在一起,并在计算中考虑了这两个部分的耦合效应。分析了集成仿真中的电机定子电流,电机电磁转矩和速度波,并将其与非集成仿真进行了比较,包括在Simulink中进行单控制系统模型仿真(在不进行电机电磁场有限元分析的情况下)和在Maxwell中进行无电机单感应电动机模型仿真精确的控制策略。实践证明,综合仿真反应了感应电动机的实际运行状况,其结果也满足工程精度要求。同时,该方法可进一步用于解决实际运行中的问题并优化电动机设计。

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