基于滑模观测器的真空吸尘器高速无刷直流电机无传感器控制

Sangjae Ok, Dong-Hee Lee
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引用次数: 1

摘要

提出了一种利用滑模观测器对真空吸尘器高速无刷电机进行无传感器控制的方法。对于吸尘器来说,由于高温、高速等恶劣环境,电机参数容易发生变化。虽然滑模观测器(SMOs)对参数变化的鲁棒性比反电动势观测器强,但SMO中signum函数的抖振会在较宽的速度范围内降低无传感器性能。虽然s型函数可以降低抖振效应,但仍然难以同时实现收敛和抖振消除。在该方法中,对s型函数引入变加速度,以保持在全速度范围内的收敛性和颤振性。根据估计的速度,将s型函数的最优加速度斜率应用到设计的SMO中。实验结果验证了所提出的变s型函数在SMO无传感器控制中的适用性和有效性。
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Sensorless Control of High-Speed BLDC Motor for Vacuum Cleaner Using Sliding Mode Observer
This paper presents a sensorless control method of a high-speed BLDC (Brushless DC) motor for vacuum cleaners using a sliding mode observer. For vacuum cleaners, motor parameters are susceptible to change due to the harsh environment such as high temperature and high speed. Although sliding mode observers (SMOs) are more robust to parameter variation than back-EMF observers, the chattering from the signum function in the SMO decreases the sensorless performance over a wide speed range. Although sigmoid function can reduce the chattering effect, it is still difficult to achieve convergence and chattering cancelation together. In the proposed method, a variable acceleration is introduced for sigmoid function to maintain the convergence and chattering reduction in the full speed range. The optimal acceleration slope of the sigmoid function is applied in the designed SMO according to the estimated speed. The suitability and effectiveness of the sensorless control with SMO to which the proposed variable sigmoid function is applied was verified through experimental results.
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