Schwarz-Christoffel分析法在电机槽形优化中的应用

Tim C. O’Connell, P. Krein
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引用次数: 25

摘要

在蒙特卡罗电机槽形搜索算法中实现了Schwarz-Christoffel方法,该算法试图在约束磁通密度的情况下最大化二维电机截面上的平均转矩。固定的槽电流密度被强制执行,槽形状在十二个变量的搜索空间中变化。通过改变机器气隙多边形转子顶点的位置来模拟转子运动,同时保持单连通多边形和定子与转子q轴电流之间90度的位移。转子力是通过对麦克斯韦应力张量沿封闭路径的积分来计算的。采用蒙特卡罗算法进行了11,050个点的搜索,并推导出了最小代价水平曲线。简要介绍了Schwarz-Christoffel方法的历史和背景,并与有限元和边界元方法进行了比较。
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The Schwarz-Christoffel Analytical Method Applied to Electric Machine Slot Shape Optimization
The Schwarz-Christoffel method is implemented in a Monte Carlo electric machine slot shape search algorithm attempting to maximize average torque under constrained flux density in a two-dimensional developed machine cross-section. A fixed slot current density is enforced, and the slot shape is varied over a twelve-variable search space. Rotor motion is simulated by changing the position of the machine air gap polygon's rotor vertices while maintaining both a simply-connected polygon and a 90deg shift between stator and rotor q-axis currents. Rotor force is calculated by integrating Maxwell's stress tensor along a closed path enclosing the rotor. A Monte Carlo search with 11,050 points is carried out and a minimum cost horizon curve is deduced from the data. A brief history and context for the Schwarz-Christoffel approach is given with a comparison to the finite element and boundary element methods.
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