设计鲁棒输入整形的线性规划方法

L. V. D. Broeck, G. Pipeleers, J. D. Caigny, B. Demeulenaere, J. Swevers, J. Schutter
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引用次数: 10

摘要

输入整形是一种成熟的技术,用于产生预滤波器,使柔性机械系统在很少或没有残余振动的情况下移动。传统的输入成形设计策略往往是解析式的,本文介绍了一种基于数值优化的设计方法。结果表明,通过仔细选择优化变量、目标函数和约束条件,可以得到一个线性优化问题。因此,可以保证在几秒钟的计算时间内找到全局最优的输入形状器。与传统的主要基于二阶系统的输入整形器不同,本文提出的优化框架能够处理高阶线性定常动态系统。此外,对输入、输出和状态变量的约束很容易解释,以及对参数不确定性的鲁棒性。数值结果说明了所提出的设计方法再现现有输入整形设计方法的能力,而实验结果则说明了其在高阶系统中的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A linear programming approach to design robust input shaping
Input shaping is an established technique to generate prefilters that move flexible mechanical systems with little or no residual vibration. While traditional input shaping design strategies are often analytical, the present paper introduces a design method based on numerical optimization. It is shown that, through a careful selection of the optimization variables, objective function and constraints, it is possible to obtain a linear optimization problem. As a result, it is guaranteed that the globally optimal input shaper be found in a few seconds of computational time. The presented optimization framework is able to handle higher-order, linear time-invariant dynamic systems, as opposed to traditional input shapers, which are mainly based on second- order systems. Moreover, constraints on input, output and state variables are easily accounted for, as well as robustness against parametric uncertainty. Numerical results illustrate the capability of the proposed design approach to reproduce existing input shaping design approaches, while experimental results illustrate its potential for higher-order systems.
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