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Implementing SVPWM Technique to an Axial Flux Permanent Magnet Synchronous Motor Drive with Internal Model Current Controller

机译:用内模电流控制器实现轴向磁通永磁同步电动机的sVpWm技术

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摘要

This paper presents a study of axial flux permanent magnet synchronous motor (AFPMSM) drive system. An internal model control (IMC) strategy is introduced to control the AFPMSM drive through currents, leading to an extension of PI control with integrators added in the off-diagonal elements to remove the cross-coupling effects between the applied voltages and stator currents in a feed-forward manner. The reference voltage is applied through a space vector pulse width modulation (SVPWM) unit. A diverse set of test scenarios has been realized to comparatively evaluate the state estimation of the sensor-less AFPMSM drive performances under the implemented IMCbased control regime using a SVPWM inverter. The resulting MATLAB simulation outcomes in the face of no-load, nominal load and speed reversal clearly illustrate the well-behaved performances of IMC controller and SVPWM technique to an Axial Flux PM Motor Drive system.
机译:本文介绍了轴向磁通永磁同步电动机(AFPMSM)驱动系统的研究。引入了内部模型控制(IMC)策略来通过电流控制AFPMSM驱动器,从而扩展了PI控制,在对角线元素中添加了积分器,从而消除了交流电中施加的电压和定子电流之间的交叉耦合效应。前馈方式。参考电压通过空间矢量脉冲宽度调制(SVPWM)单元施加。已经实现了多种测试方案,以在使用SVPWM逆变器的已实现基于IMC的控制机制下,比较评估无传感器AFPMSM驱动性能的状态估计。在空载,标称负载和速度反转的情况下,所得的MATLAB仿真结果清楚地说明了IMC控制器和SVPWM技术对轴向磁通PM电动机驱动系统的良好性能。

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