线性异步电动机设计数学模型及其软件实现

S. Kurilin, Vladimir V. Fedotov, Irina S. Savateeva, Alexander V. Zakharov
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摘要

数学模型是线性异步电动机布局设计的主要工具。现有的线性异步电动机设计模型假定设备由多相对称正序电流源供电,这就排除了电感器相电流的不对称性和牵引力的相应减小。这种方法不够灵活,因为线性异步电动机在各种运动速度下运行时,电流不对称系数与运动速度之间存在函数关系。本研究为设计目的开发了一个数学模型,以实现电流不对称系数与运动速度之间的函数关系。该数学模型包含 13 个线性方程,将几何尺寸、电流负载、电磁场特性和机械力与电机次级元件的速度联系起来。电动机的电流负载具有不同程度的椭圆性,这取决于运动速度。对数学模型进行了算法研究,并开发了相应的软件建模工具。提出的程序算法包含两个子程序,使用 Maple 符号计算软件包实现。为了扩大用户范围,软件模型还采用了 C++ 语言。在这种情况下,对于根据 "三角形 "电路将线性异步电动机电感器绕组连接到对称三相电压源的情况,激励电流波的不对称系数与运动速度的函数关系以迭代程序的形式实现。以三相线性异步电动机为例,模拟了电动机的电磁和机械特性。结果表明,电流不对称对线性异步电动机机械特性的影响较小,且在高速运转时表现出来。因此,在电动机布局设计任务中,可以使用从对称电流源为线性异步电动机供电的模型,或在其中引入固定的不对称系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mathematical model for the design of linear asynchronous electric motors and its software implementation
Mathematical models are the main tool for the layout design of linear asynchronous electric motors. Existing design models of linear asynchronous electric motors assume that the device is powered from a source of multiphase symmetrical positive sequence current, which excludes from consideration the asymmetry of the inductor phase currents and the associated reduction in traction force. This approach is not flexible enough, since the operation of linear asynchronous electric motors in a wide range of movement speeds assumes a functional relationship between the current asymmetry coefficient and the movement speed. The study developed a mathematical model for design purposes that implements the functional relationship between the current asymmetry coefficient and the speed of movement. The mathematical model represents 13 linear equations linking geometric dimensions, current loads, electromagnetic field characteristics and mechanical forces with the speed of the secondary element of the electric motor. The current load of an electric motor has a variable degree of ellipticity depending on the speed of movement. An algorithmic study of the mathematical model was carried out and corresponding software modeling tools were developed. The proposed program algorithm, containing two subroutines, is implemented using the Maple symbolic computing software package. In order to expand the range of users, the software model is additionally implemented in C++. In this case, the functional dependence of the asymmetry coefficient of the exciting current wave on the speed of movement is implemented in the form of an iterative procedure for the case of connecting the winding of the linear asynchronous electric motors inductor to a source of symmetrical three-phase voltage according to the “triangle” circuit. Using the example of a three-phase linear asynchronous electric motors, the electromagnetic and mechanical characteristics of the electric motor were simulated. It was stated that the influence of current asymmetry on the mechanical characteristics of the linear asynchronous electric motors is small and is expressed in the region of high speeds. This makes it possible, in design tasks for the layout of an electric motor, to use models that involve powering the linear asynchronous electric motors from a symmetrical current source or to introduce a fixed asymmetry coefficient into them.
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