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Active disturbance rejection control for structural vibration

机译:主动抗扰控制结构振动

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Construction vibration is a fast responding, multivariable coupled dynamic system. In this paper, an active disturbance rejection control (ADRC) solution is proposed and tested on a certain three-storey building model. The proposed system with a decentralized structure is free from complex decoupling which is hard to practice in actual application. Under ADRC framework, the influence of the entanglement between two control loops, the un-modeled, the higher order dynamics and the uncertainties are regarded as a single combined general disturbance, which could be actively compensated by the controller with the information obtained from the Extended State Observer(ESO). The simulation results indicate that the proposed strategy could attenuate structural vibration effectively when actual earthquake signal is added into the system. Since ADRC method is model free, strong controller robustness is well secured, and a single set of parameters is adequate in various situations. Due to the advantages in disturbance-rejection and structure simplicity and tuning easiness, ADRC provides an simple, practical alternative solution for structural vibration control in both earthquake and industrial application.
机译:施工振动是一个快速响应的多变量耦合动力系统。本文提出了一种主动抗干扰控制(ADRC)解决方案,并在某三层建筑模型上进行了测试。所提出的具有分散结构的系统没有复杂的去耦,这在实际应用中很难实现。在ADRC框架下,两个控制回路之间的纠缠,未建模,高阶动力学和不确定性的影响被视为单个组合的一般干扰,控制器可以利用从扩展获得的信息来主动补偿。国家观察员(ESO)。仿真结果表明,该方法能在实际地震信号加入系统后有效地衰减结构振动。由于ADRC方法是无模型的,因此可以很好地确保强大的控制器鲁棒性,并且在各种情况下使用一组参数就足够了。由于具有消除干扰,结构简单和易于调整的优势,ADRC为地震和工业应用中的结构振动控制提供了一种简单实用的替代解决方案。

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