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Robust control to parametric uncertainties in smart structures using linear matrix inequalities

机译:使用线性矩阵不等式对智能结构中的参数不确定性进行鲁棒控制

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摘要

The study of algorithms for active vibrations control in flexible structures became an area of enormous interest, mainly due to the countless demands of an optimal performance of mechanical systems as aircraft and aerospace structures. Smart structures, formed by a structure base, coupled with piezoelectric actuators and sensor are capable to guarantee the conditions demanded through the application of several types of controllers. This article shows some steps that should be followed in the design of a smart structure. It is discussed: the optimal placement of actuators, the model reduction and the controller design through techniques involving linear matrix inequalities (LMI). It is considered as constraints in LMI: the decay rate, voltage input limitation in the actuators and bounded output peak (output energy). Two controllers robust to parametric variation are designed: the first one considers the actuator in non-optimal location and the second one the actuator is put in an optimal placement. The performance are compared and discussed. The simulations to illustrate the methodology are made with a cantilever beam with bonded piezoelectric actuators.
机译:柔性结构中主动振动控制算法的研究成为人们关注的热点,这主要是由于对机械系统(如飞机和航空航天结构)的最佳性能提出了无数的要求。由结构基座构成的智能结构,再加上压电致动器和传感器,能够通过应用多种类型的控制器来保证所要求的条件。本文介绍了智能结构设计中应遵循的一些步骤。讨论:通过涉及线性矩阵不等式(LMI)的技术,执行器的最佳位置,模型简化和控制器设计。在LMI中将其视为约束条件:衰减率,执行器中的电压输入限制和有界的输出峰值(输出能量)。设计了两个对参数变化具有鲁棒性的控制器:第一个将执行器考虑在非最佳位置,第二个将执行器放置在最佳位置。性能进行比较和讨论。模拟是通过结合压电致动器的悬臂梁进行的。

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