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Comparison of Efficiency for a PI and a FLC Based IPMSM Drive Incorporating Loss Minimization Algorithm over Wide Speed Range

机译:基于PI的效率比较和基于FLC的IPMSM驱动器在宽速范围内结合损耗最小化算法

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This paper presents a comparison in efficiency between a fuzzy logic controller (FLC) and a proportional-integral (PI) controller based interior permanent magnet synchronous motor (IPMSM) drive incorporating an online loss minimization algorithm (LMA). The LMA is developed based on the motor model. In order to maximize the operating efficiency the d-axis armature current is controlled optimally based on the developed LMA. A novel fuzzy logic controller (FLC) is developed, in such a way that it can simultaneously control both torque and flux of the motor while maintaining current and voltage constraints. Thus, the FLC extends the operating speed limits for the motor. The LMA is incorporated with the FLC so that the motor can operate over a wide speed range while maintaining the high efficiency. A performance comparison of the LMA based IPMSM drive with FLC and PI controller is provided. Simulation results demonstrate the higher efficiency and better dynamic response of the FLC based drive as compared to the PI controller over a wide speed range. The complete drive is also experimentally implemented using DSP board DS1104 although the complete experimental tests are yet to be done.
机译:本文呈现了效率的模糊逻辑控制器(FLC)和结合有在线损耗最小化算法(LMA)比例 - 积分(PI)控制器基于内部永磁同步电动机(IPMSM)驱动器之间的比较。 LMA是基于电机模型开发的。为了最大化操作效率,基于开发的LMA最佳地控制D轴电枢电流。开发了一种新型模糊逻辑控制器(FLC),使得它可以同时控制电动机的扭矩和通量,同时保持电流和电压约束。因此,FLC延伸了电动机的操作速度限制。 LMA与FLC结合在一起,使得电动机可以在宽速度范围内操作,同时保持高效率。提供了一种基于LMA的IPMSM驱动器与FLC和PI控制器的性能比较。与PI控制器相比,仿真结果表明,与宽速度范围相比,FLC基于PI控制器的效率和更好的动态响应。完整的驱动器也使用DSP板DS1104进行实验实施,尽管尚未完成完整的实验测试。

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