Investigation of Frequency Controlled Electric Drive with Control Signal Limitation by the Frequency Controller

V. Shokhin, V. Khramshin, G. Kornilov, O. Permyakova
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Abstract

The paper is concerned with the automatic electric drive characteristics taking into account its coordinate limitations, in particular, frequency converter input voltage. A model developed in MATLAB environment in SIMULINK application was used to carry out the research work. The model includes a frequency converter, an asynchronous motor and a speed control system with vector control where the variables are represented both in fixed and rotating coordinate systems. To analyse the electric drives with vector control, the method for structural modeling was used. The model takes into account the voltage limitation at the current controller output in the speed control system because it, in fact, limits the amplitudes of input three-phase voltages in the frequency converter. Automatic electric drive dynamics is studied in the acceleration and load surge modes. When the changes in the electric drive resistance moment are significant, the increase in the voltages at the current controller output is possible, which exceeds the voltage capacity for the frequency converter input. In this case, the speed control system opens and causes electric drive malfunction. In order to adjust the drive operation in this mode, it was proposed to decrease the voltage set point at the input of the flux linkage controller. The simulation results confirm the efficiency of this solution.
频率控制器控制信号限制的变频电力传动研究
本文考虑了自动电驱动的坐标限制,特别是变频器输入电压的限制,研究了自动电驱动的特性。利用MATLAB环境下的SIMULINK开发的模型进行了研究工作。该模型包括一个变频器、一个异步电动机和一个矢量控制的速度控制系统,其中变量在固定坐标系和旋转坐标系中表示。采用结构建模的方法对矢量控制的电驱动系统进行了分析。该模型考虑了速度控制系统中电流控制器输出端的电压限制,因为它实际上限制了变频器中输入三相电压的幅值。研究了自动电驱动在加速和负载喘振两种模式下的动力学特性。当电驱动电阻矩变化显著时,电流控制器输出电压的增加就有可能超过变频器输入的电压容量。在这种情况下,速度控制系统打开并导致电力驱动故障。提出了降低磁链控制器输入电压设定点的方法,以调节该模式下的驱动运行。仿真结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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