首页> 外文会议>Eleventh International Conference on Adaptive Structures and Technologies: New Ere, New Areas, and New Directions Oct 23-26, 2000 Nagoya, Japan >EXPERIMENTAL FLUTTER CONTROL OF A CANTILEVERED PLATE USING PIEZOELECTRIC ACTUATION AND MODERN CONTROL THEORY
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EXPERIMENTAL FLUTTER CONTROL OF A CANTILEVERED PLATE USING PIEZOELECTRIC ACTUATION AND MODERN CONTROL THEORY

机译:压电驱动和现代控制理论的悬臂板实验颤振控制

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This paper focuses on the experimental active flutter suppression of a cantilevered plate using piezoelectric actuation and modern control theory. Integration of a finite element method, a panel aerodynamic method, and the minimum state space realization yields the state space equation of motion for a fluttering plate. Distributed piezoelectric actuators are grouped into two equivalent actuators such that the controllability of the system is maximized. A series of controllers are designed based on modern control framework, and the flutter suppression performance is evaluated via the wind tunnel testing. Among the designed controllers, μ - synthesized controller shows the improved behavior over a wide flow speed range.
机译:本文重点研究了利用压电驱动和现代控制理论对悬臂板进行有源主动颤振抑制的方法。有限元方法,面板空气动力学方法和最小状态空间实现的集成产生了振颤板的运动状态空间方程。分布式压电致动器被分组为两个等效致动器,以使系统的可控制性最大化。基于现代控制框架设计了一系列控制器,并通过风洞测试对颤振抑制性能进行了评估。在设计的控制器中,μ-合成控制器在较宽的流速范围内显示出改进的性能。

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