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Six-Phase BLDC Reluctance Machines: FEM-Based Characterization and Four-Quadrant Control

机译:六相BLDC磁阻电机:基于FEM的表征和四象限控制

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In a yet another effort to produce better permanent magnet (PM)-less rotor-winding-less brushless electric motor drives, this paper reports work related to multiphase high saliency rotor dual-flat-top alternative current control brushless dc (BLDC) reluctance machine drives. The aim is to produce high torque density, low loss/torque in a PM-less rotor-winding-less machine by full usage of machine windings and core and of inverter kVA. A new derivation of the principle of operation, essential rotary and linear machine topologies, and a 2-D finite-element method (FEM) analysis for torque density and torque pulsations on an already built (6 phase, 6 poles, 35 N m) lab prototype are made available and show promising results. Experimental flux decay test results are presented, which, together with standstill torque measurements, validate the finite-element model. Advanced iron loss computation by finite-element analysis indicates moderate core loss, although high air-gap magnetic flux density and current harmonics occur as a natural behavior of a BLDC machine. Electrical and mechanical parameter identification is followed by the development of a circuit model based on FEM imported data for parameters and by a four-quadrant control strategy proposal. Running experiments (motoring and generating) with speed-reversal and field-weakening modes using a DSpace platform, which drives three three-phase inverters that power a star-connected six-phase BLDC multiphase reluctance machine are presented, thus showing operation with a reduced number of switches in the inverter.
机译:为了生产出更好的无永磁(PM)少转子绕组无刷电动机驱动器的另一项努力,本文报道了与多相高凸极转子双平顶交流无刷直流(BLDC)磁阻电机有关的工作驱动器。目的是通过充分利用电机绕组和铁芯以及逆变器kVA,在无PM转子无绕组电机中产生高转矩密度,低损耗/转矩。对工作原理的新推导,基本的旋​​转和线性电机拓扑以及对已构建的(6相,6极,35 N m)转矩密度和转矩脉动的二维有限元方法(FEM)分析提供了实验室原型,并显示出可喜的结果。给出了实验通量衰减测试结果,该结果与静止扭矩测量结果一起验证了有限元模型。尽管有限的气隙磁通密度和电流谐波是BLDC电机的自然行为,但通过有限元分析进行的高级铁损计算表明铁心损失适中。机电参数识别之后,将基于FEM导入的参数数据开发电路模型,并提出四象限控制策略建议。提出了使用DSpace平台进行速度反转和磁场减弱模式的运行实验(电动机和发电机),该平台驱动三个三相逆变器,该三相逆变器为星形连接的六相BLDC多相磁阻电机提供动力,从而降低了运行成本逆变器中的开关数量。

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