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Computational methods for the fast boundary stabilization of flexible structures. Part 1: The case of beams

机译:柔性结构快速边界稳定的计算方法。第1部分:梁的情况

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An efficient active control strategy for flexible systems [V. Komornik, Rapid boundary stabilization of linear distributed systems, SIAM J. Control Optim. 35 (5) (1997) 1591-1613] is thoroughly investigated from the numerical point of view. A non-standard computational framework is proved to be relevant both for simulation and control synthesis. The proposed formulation proves necessary in so far as a standard numerical approach is shown to fail. The observed properties of the state feedback law confirm the theory as far as beams are concerned. In particular, one can achieve an arbitrarily large decay rate of some weak norm of the system. Moreover, the control law compares favourably with the integral force feedback in terms of efficiency. Finally, smoothing procedures are introduced to decrease the control spill-over associated with the possible lack of compatibility between boundary control and initial conditions. This purely artificial spill-over is proved to result from oversimplification of the control process modelling.
机译:灵活系统的有效主动控制策略[V. Komornik,线性分布系统的快速边界稳定,SIAM J. Control Optim。 [35(5)(1997)1591-1613]从数值的观点进行了彻底的研究。一个非标准的计算框架被证明与仿真和控制综合都相关。就标准的数值方法证明无效的情况而言,提出的公式被证明是必要的。就光束而言,状态反馈定律的观测特性证实了该理论。特别地,可以实现系统的某些弱范数的任意大的衰减率。此外,在效率方面,控制定律与积分力反馈相比具有优势。最后,引入平滑程序以减少与边界控制和初始条件之间可能缺乏兼容性相关的控制溢出。事实证明,这种纯粹的人为溢出是由于控制过程建模的过度简化所致。

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