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Decentralized semi-active structural vibration control based on optimal system modelling

机译:基于最优系统造型的分散半主动结构振动控制

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摘要

The problem of decentralized semi-active stabilization of vibration of a beam structure is studied. The decentralized controller's architecture is attained by means of optimal system modelling. In this approach, based on a specially designed and optimized set of basis functions, the solution to the continuous Euler–Bernoulli beam equation is approximated by a discrete system, where the mass and stiffness matrices ensure that the assumed stabilizing control law can be operated by using solely the local state information. The performance of the method is examined through numerical experiments for a series of free-vibration scenarios with comparison to competitive decentralized and centralized control strategies. The performance impact of the selection of the parameters of the optimal system model is also studied. The designed method allows practical modular arrangements of the control system and is applicable to large-scale structures.
机译:研究了分散的半主动稳定的梁结构振动的问题。通过最佳系统建模实现了分散的控制器的架构。在这种方法中,基于专门设计和优化的基本功能,对连续Euler-Bernoulli波束方程的解决方案由分立系统近似,其中质量和刚度矩阵确保了假设的稳定控制法可以通过仅使用本地国家信息。通过对一系列自由振动方案的数值实验检查该方法的性能,与竞争性分散和集中式控制策略相比。还研究了选择最佳系统模型参数的性能影响。设计的方法允许控制系统的实际模块化布置,适用于大规模结构。

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