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LQG FLUTTER CONTROL OF WIND TUNNEL MODEL USING PIEZO-CERAMIC ACTUATOR

机译:用压电静力致动器的风洞模型LQG扑波控制

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A single element of piezo ceramics is used in this study, instead of conventional actuators such as a hydraulic actuator or electric motor, as an actuator in order to control flutter. This study aims at confirming that the free vibration in the still air and the flutter in the wind tunnel, of an aluminum plate wing, can actually be controlled by a single element of a piezo ceramic actuator by L control. The wing model of a rectangular aluminum plate (2 mm× . Mm× .5 mm) and the aluminum's additional mass (2 . Mm× 15 . Mm× .5 mm) has one piezo ceramic element PZT (4 . Mm × 2 . Mm × . 1 mm) attached on its one side. First we used proportional control for free vibration and flutter in order to confirm the fundamental effectiveness of PZT. And used L control for flutter in order to confirm a better effect of PZT. So piezo ceramic actuator was confirmed to be effective enough to control flutter and confirmed to flutter speed increased.
机译:在该研究中使用了压电陶瓷的单个元件,而不是传统的致动器,例如液压致动器或电动机,作为致动器,以控制颤动。该研究旨在确认铝板翼的静止空气和颤动中的自由振动实际上可以通过L控制的压电陶瓷致动器的单个元件来控制。矩形铝板的翼型(2mm×5mm)和铝制的额外质量(2. mm×15.mm×0.5mm)具有一个压电陶瓷元素PZT(4. mm×2。 mm×1 mm)一侧连接。首先,我们使用了对自由振动和颤动的比例控制,以确认PZT的基本效果。并使用L控制扑动,以确认PZT的更好效果。因此,确认压电陶瓷致动器足以控制颤动并确认颤振速度增加。

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