Control of LPV mechatronic systems in presence of dynamic uncertainties

C. Ionescu, Nicolas Van Oevelen, D. Copot, B. Paijmans, R. D. De Keyser
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引用次数: 2

Abstract

This paper introduces a novel method to control linear parameter varying (LPV) systems by employing methodologies and algorithms for deployment of — generally known as — fractional order controllers (FOC). The origin of FOC stems from fractional calculus where arbitrary order dynamic characterising functions can be used as envelop for varying dynamic properties of systems. The main feature employed here is the property of robustness, an intrinsic characteristic of FOC, if tuned accordingly. We present here the rationale and method for injecting a high degree of robustness for LPV dynamic systems. A study case from aerospace engineering is used to illustrate the proposed method and to demonstrate its usefulness. The realistic simulation results indicate that the proposed scheme works well and fulfils the imposed specifications.
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存在动态不确定性的LPV机电系统控制
本文介绍了一种新的方法来控制线性参数变化(LPV)系统的方法和算法的部署-通常被称为-分数阶控制器(FOC)。FOC起源于分数阶微积分,其中任意阶的动态表征函数可以作为系统动态特性变化的包络。这里使用的主要特征是鲁棒性,这是FOC的固有特征,如果进行相应的调整。本文提出了为LPV动态系统注入高度鲁棒性的基本原理和方法。以航空航天工程为例,说明了该方法的有效性。仿真结果表明,该方案能够很好地满足设计要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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