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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >A Disturbance Attenuation Approach for a Class of Continuous Piecewise Affine Systems: Control Design and Experiments
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A Disturbance Attenuation Approach for a Class of Continuous Piecewise Affine Systems: Control Design and Experiments

机译:一类连续分段仿射系统的扰动衰减方法:控制设计和实验

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摘要

We consider the disturbance attenuation problem for a class of continuous piecewise affine systems. Hereto, observer-based output-feedback controllers are proposed that render the closed-loop system uniformly convergent. The convergence property ensures, first, stability and, second, the existence of a unique, bounded, globally asymptotically stable steady-state solution for each bounded disturbance. The latter property is key in uniquely specifying closed-loop performance in terms of disturbance attenuation. Because of its importance in engineering practice, the class of harmonic disturbances is studied in particular and performance measures for this class of disturbances are proposed based on so-called generalized frequency response functions for convergent systems. Additionally, the derived control strategy is extended by including conditions that guarantee the satisfaction of a bound on the control input. The effectiveness of the proposed control design strategy is illustrated by the application of the results to an experimental benchmark system being a piecewise affine beam system.
机译:我们考虑了一类连续分段仿射系统的扰动衰减问题。迄今为止,提出了基于观察者的输出反馈控制器,其使闭环系统均匀收敛。收敛特性首先确保稳定性,其次确保对于每个有界干扰,都有一个唯一的,有界的,全局渐近稳定的稳态解。后者的属性是根据干扰衰减唯一指定闭环性能的关键。由于其在工程实践中的重要性,因此特别研究了谐波干扰的类别,并基于所谓的收敛系统的广义频率响应函数,针对此类干扰提出了性能指标。另外,通过包括确保满足控制输入上的界限的条件来扩展派生的控制策略。通过将结果应用于分段仿射光束系统的实验基准系统,可以说明所提出的控制设计策略的有效性。

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