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Numerical Modeling and Performance Analysis of a Disk Drive Spindle Motor using Circuit-Field Coupled Systems

机译:磁盘-驱动主轴电机的电路-场耦合系统数值建模与性能分析

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This paper presents the modeling, simulation and performance analysis of the disk drive spindle motor using numerical methods. Dynamic model of the motor is developed using time stepping FEM. Due to the direct coupling of the transient electromagnetic field, circuit and motion; the solutions can take into account the saturation effect, the eddy current effect, the rotor movement, the non-sinusoidal quantities and high order harmonics of the electromagnetic field which are very difficult to include in analytical approach and traditional FEM. An improved steady state model is proposed using time stepping FEM combined with magneto-static FEM to reduce the time spent in reaching steady state solution. A new approach to couple the time stepping FEM with closed loop feedback control is presented to analyze the motor with a controller as an actual motor-controller drive system
机译:本文介绍了使用数值方法对磁盘驱动器主轴电机的建模,仿真和性能分析。电机的动态模型是使用时间步进有限元法开发的。由于瞬变电磁场,电路和运动的直接耦合;解决方案可以考虑饱和效应,涡流​​效应,转子运动,电磁场的非正弦量和高次谐波,这在分析方法和传统有限元法中都很难包含在内。提出了一种改进的稳态模型,将时步有限元法与静磁有限元法相结合,以减少达到稳态解所花费的时间。提出了一种将时步有限元法与闭环反馈控制相结合的新方法,以使用控制器作为实际的电动机-控制器驱动系统来分析电动机

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