论文标题

地震控制:强大控制的新兴应用。理论和实验测试

Earthquake Control: An Emerging Application for Robust Control. Theory and Experimental Tests

论文作者

Gutiérrez-Oribio, Diego, Tzortzopoulos, Georgios, Stefanou, Ioannis, Plestan, Franck

论文摘要

本文解决了使用强大的控制理论防止通过地壳中的流体注射来防止地震的可能性。设计的强大控制器通过跟踪缓慢的参考信号来驱动Aseism a驱动故障系统到较低能量的新平衡点。控制设计基于可重现类似地震的不稳定性的降级非线性模型。考虑了与潜在物理过程和外部扰动的摩擦和机械性能有关的不确定性。得出了两种类型的控制器。第一个是基于滑动模式理论,导致跟踪误差和Lipschitz W.R.T.的局部有限时间收敛。时间扰动。第二个控制器基于LQR控制,并提出了跟踪误差的全局指数稳定性和Lipschitz W.R.T.的拒绝。状态扰动。两个控制器都会产生连续的控制信号,从而减弱在滑动模式算法的情况下的搅动效果。对开发的控制器进行了广泛的测试,并根据实验室中的数值模拟和实验进行比较。目前的工作为将强大的非线性控制理论应用于复杂的地理系统,地震和可持续能源生产提供了新的观点。

This paper addresses the possibility of using robust control theory for preventing earthquakes through fluid injections in the earth's crust. The designed robust controllers drive aseismically a fault system to a new equilibrium point of lower energy by tracking a slow reference signal. The control design is based on a reduced-order nonlinear model able to reproduce earthquake-like instabilities. Uncertainties related to the frictional and mechanical properties of the underlying physical process and external perturbations are considered. Two types of controllers are derived. The first one is based on sliding-mode theory and leads to local finite-time convergence of the tracking error and rejection of Lipschitz w.r.t. time perturbations. The second controller is based on LQR control and presents global exponential stability of the tracking error and rejection of Lipschitz w.r.t. states perturbations. Both controllers generate a continuous control signal, attenuating the chattering effect in the case of the sliding-mode algorithms. The developed controllers are tested extensively and compared on the basis of numerical simulations and experiments in the laboratory. The present work opens new perspectives for the application of robust nonlinear control theory to complex geosystems, earthquakes and sustainable energy production.

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