首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems;SMASIS2011 >LIMIT-CYCLE OSCILLATION SUPPRESSION OF BIOINSPIRED ORNITHOPTER: WIND TUNNEL TESTING
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LIMIT-CYCLE OSCILLATION SUPPRESSION OF BIOINSPIRED ORNITHOPTER: WIND TUNNEL TESTING

机译:仿生飞鱼的极限周期振荡抑制:风洞测试

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This study experimentally shows that an oscillatory behavior observed in a trim flight of an ornithopter has a stable limit-cycle oscillation (LCO) characteristics and that the magnitude of the LCO in body pitch dynamics can be suppressed by active tail motion. A free flight of the tested ornithopter is emulated in the wind tunnel using a specially devised tether that provides the minimal mechanical interference to the flight of ornithopter. Due to the symmetric wing motion in forward trim flight, the longitudinal flight dynamics is more focused than the lateral one. The non-contact type sensors are used to measure the time histories of the flight state variables such as wing and tail motions, body pitch angle, and altitude. The tail motion for the pitch LCO reduction is achieved by two actuators: 1) Servo motor for the rigid-body motion of the tail elevation angle, and 2) Macro-Fiber Composite strain actuator for the elastic deformation of the tail camber. The performances of the LCO suppressions are compared in the root-mean-square-error sense and the harmonically activated in-phase tail motion linked to wing motion is observed to effectively reduce the pitch LCO.
机译:这项研究实验表明,在飞行器的微调飞行中观察到的振荡行为具有稳定的极限循环振荡(LCO)特性,并且主动尾部运动可以抑制LCO在人体俯仰动力学中的大小。使用专门设计的系绳在风洞中模拟被测飞行器的自由飞行,该系绳可为飞行器的飞行提供最小的机械干扰。由于前向纵倾飞行中的对称机翼运动,纵向飞行动力学比侧向飞行更加集中。非接触式传感器用于测量飞行状态变量(如机翼和尾翼的运动,机体俯仰角和高度)的时间历史。俯仰LCO减小的尾部运动通过两个执行器实现:1)伺服电机,用于尾部仰角的刚体运动; 2)Macro-Fiber复合应变执行器,用于尾部弯度的弹性变形。在均方根误差意义上比较了LCO抑制的性能,并观察到与机翼运动相关的谐波激活的同相尾部运动可以有效地减小俯仰LCO。

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