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Modeling of Voltage Characteristics of Variable Frequency Motors and Comparison with Asynchronous Motors

机译:变频电动机的电压特性建模及与异步电动机的比较

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Due to the rectification and inversion links of frequency conversion module, the variable frequency motor has different load characteristics from the traditional motor, and with massive grid-connection of variable frequency motors, the grid is presenting new load characteristics. In this paper, specific models of variable frequency motor and the traditional asynchronous motor were built based on the MATLAB/Simulink simulation platform, and on that basis, we compared and analyzed the influence of voltage sag on their respective load characteristics, and their tolerance of voltage sag. During simulation of the load characteristics of variable frequency motor, the magnitude of voltage sag was used as the control variable to obtain and analyze the active power and reactive power curves under different voltages levels. Then, the grid system model was built to study the stability of power system under two different loads of variable frequency motor and asynchronous motor respectively, and discuss the influence of variable frequency motor on the security and stability of power grid. The simulation results show that under voltage sag, the active power and reactive power demands of variable frequency motor and asynchronous motor were different; after the voltage was recovered from the voltage sag, the active power demand of variable frequency motor was significantly higher than that of asynchronous motor. If the common asynchronous motor model is solely used for calculation of grid stability in the environment having large percentage of electronically connected loads, the results would be too optimistic.
机译:由于变频模块的整流和逆变环节,使得变频电动机具有与传统电动机不同的负载特性,并且随着变频电动机的大规模并网,电网呈现出新的负载特性。本文在MATLAB / Simulink仿真平台的基础上,建立了变频电机和传统异步电机的具体模型,并在此基础上比较分析了电压骤降对它们各自的负载特性及其容差的影响。电压骤降​​。在变频电机的负载特性仿真过程中,以电压暂降量为控制变量,获得并分析了不同电压水平下的有功功率和无功功率曲线。然后,建立了电网系统模型,分别研究了变频电动机和异步电动机在两种不同负载下的电力系统的稳定性,并探讨了变频电动机对电网安全性和稳定性的影响。仿真结果表明,在电压暂降的情况下,变频电动机和异步电动机的有功功率和无功功率需求是不同的。从电压骤降中恢复电压后,变频电动机的有功功率需求明显高于异步电动机。如果普通的异步电动机模型仅用于计算电子连接负载百分比较高的环境中的电网稳定性,则结果将过于乐观。

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