首页> 外文会议>Industrial Electronics Society, 2003. IECON '03. The 29th Annual Conference of the IEEE >An EKF based solution for the compensation of load, friction and torque ripple in direct drive systems
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An EKF based solution for the compensation of load, friction and torque ripple in direct drive systems

机译:基于EKF的解决方案,用于补偿直接驱动系统中的负载,摩擦和转矩波动

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This study aims to achieve an improved performance in the position control of a permanent magnet synchronous motor (PMSM) driven single link arm, by compensating for load, friction and torque ripple effects. For this purpose, in the first part of the study, an EKF based algorithm is developed to estimate the model uncertainties, assuming a known load. This is used to determine friction effects in addition to the most dominant component of torque ripple. The estimate of model uncertainties is also used for the partial compensation of this term with a basic PD+ controller. Following this procedure, another EKF algorithm is developed to estimate the amplitude of the dominant torque harmonic to be used for the compensation of that ripple component with the PD+ controller, in addition to the compensation of friction and load. The experimental results demonstrate improved performance in the system response with the on-line estimation of the torque ripple with EKF.
机译:本研究旨在通过补偿负载,摩擦和扭矩脉动效果来实现永磁同步电动机(PMSM)驱动单连杆臂的位置控制中的改进性能。为此目的,在该研究的第一部分中,开发了一种基于EKF的算法来估计假设已知负载的模型不确定性。除了扭矩波动的最大组成部分之外,这用于确定摩擦效应。模型不确定性的估计还用于使用基本PD +控制器的该术语的部分补偿。在此过程之后,开发了另一种EKF算法以估计主要扭矩谐波的幅度,除了摩擦和负载的补偿之外,除了补偿摩擦和负载之外,还可以使用PD +控制器来补偿该纹波部件的补偿。实验结果表明,利用EKF的扭矩纹波的在线估计,在系统响应中表现出改进的性能。

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