Mathematical model for salient-pole synchronous motor field-coil calculation and optimization

Mykhailo Khai, Bohdan Kharchyshyn
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Abstract

To optimize the parameters of the salient-pole synchronous machine field-coil and achieve specified technical and economic characteristics, an optimization problem with restrictions, which belongs to the class of nonlinear programming problems, was solved. Mathematical model for salient-pole synchronous motor field-coil calculation and optimization, an algorithm and a computer program were created. The mathematical model for calculation and optimization of salient-pole synchronous machine field-coil provides a possibility to design a single-row field-coil winding based on known dimensions under the following restrictions: the minimum distance between the coils of adjacent poles must not be less than the permissible value, the temperature of the coil above the ambient temperature must not be greater than the maximum permissible for the chosen insulation class of the value of the coil, according to the conditions of single-row coils manufacturing, conductor cross-section area should not be greater than the permissible value, and the ratio of the width of the conductor to its height should be within certain limits, the dimensions of the conductor should correspond to standard values. The optimization criterion (objective function) is the copper consumption or cost of the coil, the consumption or cost of pole core steel, power losses in the coil, the total cost of copper and pole steel, the total costs of machine manufacturing and its operation. The choice of the optimization criterion depends on the purpose of the machine and the requirements placed on it. In this problem, each of these criteria is a function of one variable - the height of the field-coil.
凸极同步电机磁场线圈计算与优化数学模型
为优化凸极同步电机励磁线圈的参数,使其达到规定的技术经济特性,解决了一类非线性规划问题,即带约束的优化问题。建立了凸极同步电动机磁场线圈计算与优化的数学模型、算法和计算机程序。突出极同步电机磁场线圈计算与优化的数学模型,提供了在以下限制条件下,基于已知尺寸设计单行磁场线圈绕组的可能性:相邻的线圈两极之间的最小距离不得小于允许值,线圈的温度高于环境温度不得大于最大允许的价值选择绝缘等级的线圈,根据条件单列线圈制造、导体横截面面积不应超过容许值,和导线的宽度比高度应在一定的范围内,导体的尺寸应符合标准值。优化准则(目标函数)是线圈的铜消耗或成本、极芯钢的消耗或成本、线圈中的功率损耗、铜和极钢的总成本、机器制造及其运行的总成本。优化准则的选择取决于机器的用途和对它的要求。在这个问题中,每一个标准都是一个变量的函数——磁场线圈的高度。
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