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首页> 外文期刊>IEE Proceedings. Part B, Electric Power Applications >Robust position control of linear brushless DC motor drive sytstem based on μ-synthesis
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Robust position control of linear brushless DC motor drive sytstem based on μ-synthesis

机译:基于μ综合的线性无刷直流电动机驱动系统的鲁棒位置控制

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摘要

A robust position controller is proposed for the uncertainty rejection problem in a linear brushless DC motor (LBDCM) drive system. Friction and load variation are the main uncertainties in the LBDCM drive system; only viscous friction has been considered in previous work. Highly nonlinear friction in the system is measured and compensated by a radial basis function network. For solving the problem of load variation, three-controllers are proposed for different normalised payload conditions. Each has their own range of tolerable-load-variation; a mass estimator is developed to extend the tolerable load variation to the sum of three. In addition, mode-switching control is applied to achieve improved time-response. Both simulated and experimental results show that the proposed controller can suppress the influence of nonlinear friction and reduce the effect of large load variations; robust stability and robust performance are illustrated by corresponding μ-plots.
机译:针对线性无刷直流电动机(LBDCM)驱动系统中的不确定性抑制问题,提出了一种鲁棒的位置控制器。摩擦力和负载变化是LBDCM驱动系统的主要不确定因素。在以前的工作中只考虑了粘性摩擦。系统中的高度非线性摩擦是通过径向基函数网络进行测量和补偿的。为了解决负荷变化的问题,提出了针对不同归一化有效载荷条件的三控制器。每个都有自己的容许负载变化范围。开发了一个质量估算器,以将可承受的负载变化扩展到三个和。另外,应用模式切换控制来实现改进的时间响应。仿真和实验结果均表明,该控制器能够抑制非线性摩擦的影响,减小大的负载变化的影响。鲁棒的稳定性和鲁棒的性能由相应的μ曲线表示。

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