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A power perturbation-based MTPA control with disturbance torque observer for IPMSM drive system

机译:基于电源扰动的MTPA控制,具有IPMSM驱动系统的干扰扭矩观测器

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摘要

A novel maximum torque per ampere (MTPA) method based on power perturbation for a field-oriented control (FOC) interior permanent magnet synchronous motor (IPMSM) drive system is proposed in this study. The proposed MTPA method is designed based on the power perturbation resulting from the signal injection in the current angle. Moreover, the influence of current and voltage harmonics to the MTPA control can be effectively eliminated. Furthermore, to enhance the robustness of the control system, a real-time design scheme for the integral-proportional (IP) speed controller using a recursive least square (RLS) estimator with disturbance torque feedforward control is developed. The disturbance torque is obtained from an improved disturbance torque observer with online parameters updated. Finally, some experimental results using an IPMSM drive system based on a low-price digital signal processor (DSP) are presented. From the experimental results, the proposed control approach can guarantee the control performance of a speed loop even under a cyclic fluctuating load.
机译:本研究提出了一种基于面向现场控制(FOC)内部永磁同步电动机(IPMS)驱动系统的基于电源扰动的新的最大扭矩(MTPA)方法。所提出的MTPA方法基于由电流角度的信号注入产生的功率扰动设计。此外,可以有效地消除电流和电压谐波对MTPA控制的影响。此外,为了增强控制系统的鲁棒性,开发了使用具有干扰扭矩前馈控制的递归最小二乘(RLS)估计器的积分比例(IP)速度控制器的实时设计方案。从更新的在线参数的改进的干扰扭矩观测器中获得干扰扭矩。最后,提出了使用基于低价格数字信号处理器(DSP)的IPMSM驱动系统的一些实验结果。从实验结果中,所提出的控制方法可以保证即使在循环波动负载下也能保证速度环的控制性能。

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