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State-estimator-based robust vibration control of crane bridge system with trolley via PDE model

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Abstract

The main focus of this paper is to cope with the vibration and stabilization problem of crane bridge control systems. For the concern of improving control accuracy, a PDE model is put forward without neglecting the modal information of the system. Besides, dynamic properties of the trolley and transferred payload of the crane are taken into account in the modeling, which accords with the request of application in the practice. Considering the immeasurability of velocity, a speed-estimator-based robust control (SERC) is developed to achieve vibration suppression of the PDE crane bridge with time-varying disturbances. By giving detailed stability analysis as well as numerical simulations, the proposed control strategy is proven to be effective and limits the vibration of the crane bridge within required regions.

Original languageEnglish
Article number105799
JournalCommunications in Nonlinear Science and Numerical Simulation
Volume99
DOIs
StatePublished - Aug 2021

Keywords

  • Disturbance rejection
  • Overhead crane bridge
  • PDE modeling
  • State estimator
  • Vibration control

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