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Comparative study of multi-mass models of electrical drives with asynchronous motors

机译:异步电动机电驱动器多质量模型的比较研究

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The complexity of an electrical drive is such that its global study represents a difficult task at the design level as well as at the application level. To lighten this task, it is common practice to perform some simplifications; linearization of some characteristics, lumping of the distributed inertia of mobile parts with that of the motor rotor, etc. Because of the finite stiffness in the links between different parts of the mechanism in some types of drive (mills, large mobile structures, flexible robotic limbs, etc.), it becomes important to realize a multi-mass model of such a mechanism. This paper is about the elaboration of a refined model of an asynchronous motor drive, which takes into account the flexible links between the different parts of the load mechanism. First, a theoretical analysis is presented of the asynchronous motor and the load mechanism; second, a comparative analysis, based on numerical simulations accomplished with MATLAB/SIMULINK, is performed on drive models with one, two or three masses; then drive startup and the application of a step load are shown in the simulations; and finally, observations and comments are given about the benefits of such refined models.
机译:电驱动器的复杂性使得其整体研究在设计级别和应用程序级别代表着一项艰巨的任务。为了减轻这项任务,通常的做法是进行一些简化。某些特性的线性化,活动部件的分布惯性与电动机转子的惯性集总等。由于某些类型的驱动器(轧机,大型活动结构,柔性机器人)中机构的不同部分之间的链接具有有限的刚度,肢等),实现这种机制的多质量模型变得很重要。本文是关于精心设计的异步电动机驱动器模型的,该模型考虑了负载机制不同部分之间的灵活链接。首先,对异步电动机和负载机制进行了理论分析。其次,基于使用MATLAB / SIMULINK进行的数值模拟,对质量为1、2或3的驱动模型进行比较分析。仿真中显示了驱动启动和阶跃负载的应用;最后,对这种改进模型的好处进行了观察和评论。

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