Precision speed control of PMSM using disturbance observer and system parameter compensator

Jongsun Ko, Kyu-Gyeom Kim, Yong-Jae Lee, In-Dong Kim
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引用次数: 4

Abstract

This paper presents external load disturbance compensation that uses deadbeat load torque observer and regulation of the compensation gain by parameter estimator. The response of permanent magnet synchronous motor (PMSM) follows that of the nominal plant. The load torque compensation method is composed of a deadbeat observer that is well-known method. However it has disadvantage such as a noise amplification effect. To reduce of the effect, the post-filter, which is implemented by MA process, is proposed. The parameter compensator with recursive least square method (RLSM) parameter estimator is suggested to increase the performance of the load torque observer and main controller. Although RLSM estimator is one of the most effective methods for online parameter identification, it is difficult to obtain unbiased result using itself only application. It is caused by disturbed dynamic model with external torque. The proposed RLSM estimator is combined with a high performance torque observer to resolve the problems. As a result, the proposed control system becomes a robust and precise system against the load torque and the parameter variation. A stability and usefulness, through the verified computer simulation and experiment, are shown in this paper.
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利用扰动观测器和系统参数补偿器实现永磁同步电机的精确速度控制
本文提出了利用无差拍负载转矩观测器和参数估计器调节补偿增益的外负载扰动补偿方法。永磁同步电动机(PMSM)的响应遵循标称装置的响应。负载转矩补偿方法是由无差拍观测器组成的,这是一种众所周知的方法。但也存在噪声放大效应等缺点。为了减少这种影响,提出了采用MA过程实现后滤波的方法。为了提高负载转矩观测器和主控制器的性能,提出了基于递推最小二乘法参数估计器的参数补偿器。虽然RLSM估计器是最有效的在线参数辨识方法之一,但仅使用RLSM估计器很难获得无偏的结果。它是由具有外部转矩的扰动动力学模型引起的。提出的RLSM估计器与高性能转矩观测器相结合,解决了上述问题。结果表明,所提出的控制系统对负载转矩和参数变化具有鲁棒性和精确性。通过计算机仿真和实验验证了该方法的稳定性和实用性。
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