计算盐极同步电机稳态条件和静态特性的数学模型

Mykhailo Khai, Vasyl Khai, Bohdan Kharchyshyn
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摘要

盐极同步机在电能的产生和消耗中都占有重要地位。近年来,由于机电工程技术、半导体技术和数学建模领域的成功进步,在盐极同步机的设计、制造和运行方面取得了巨大成就。为了计算盐极同步机的额定稳态运行及其静态特性(空载、角度、V 形、调节和外部),我们建立了一个数学模型。该模型的计算机实施提高了同步电机的技术和经济性能。在建立数学模型的过程中,我们做了以下假设:机器的磁场有条件地分为工作磁场和散射磁场;机器的磁场是平坦和平行的;有源层中的磁场只有径向分量,而定子和转子磁轭中的磁场只有切向分量;绕组导体位于无限薄层中,并根据谐波规律沿槽分布;钢材中不存在损耗。为了建立盐极同步电机的数学模型,需要制定电气和磁场状态方程组。为了得到系数与转子位置无关的方程,采用了坐标变换法(变换到相对于转子静止的 dq0 矩形坐标系)。
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Mathematical model for calculating steady-state conditions and static characteristics of salient-pole synchronous machines
Salient-pole synchronous machines occupy a paramount position in both the generation and consumption of electrical energy. Recent achievements in the design, manufacturing, and operation of salient-pole synchronous machines are the result of successful advancements in the fields of electromechanical engineering technology, semiconductor technology, and mathematical modeling. To calculate the nominal steady-state operation of salient-pole synchronous machines and their static characteristics (no-load, angular, V-shaped, regulatory, and external), a mathematical model has been developed. Its computer implementation enhances the technical and economic performance of synchronous pole machines. During the creation of the mathematical model, the following assumptions were made: the magnetic field of the machine is conditionally divided into a working field and scattered fields; the magnetic field of the machine is flat and parallel; the magnetic field in the active layer has only a radial component, while in the stator and rotor yokes, only a tangential one; the winding conductors are located in an infinitely thin layer and distributed along the slot according to a harmonic law; losses in the steel are absent. To create the mathematical model of salient-pole synchronous machine, a system of equations for the electrical and magnetic state is formulated. To obtain equations with coefficients independent of the rotor position, the coordinate transformation method (transformation to the dq0 rectangular coordinate system stationary with respect to the rotor) was employed.
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