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首页> 外文期刊>International Journal of Advanced Robotic Systems >3D Flapping Trajectory of a Micro-Air-Vehicle and its Application to Unsteady Flow Simulation
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3D Flapping Trajectory of a Micro-Air-Vehicle and its Application to Unsteady Flow Simulation

机译:微空气 - 微空气的3D拍摄轨迹及其在非定常流模拟中的应用

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摘要

A three-dimensional (3D) trajectory detection framework using two high-speed cameras for the flapping flexible wing of a micro-air-vehicle (MAV) is presented. This MAV, which is called the "Golden Snitch", has a successful flight record of 8 minutes. We embed the flexible wingskin with a nine light emitting diode (LED) array as the light enhancing marker and capsulate it with parylene (poly-para-xylylene) as the protection layer. We confirm an oblique figure of eight trajectory of this MAV's wing with time-varying coordinate data. The corresponding aerofoil of the main wings' profiles was subjected to the time-varying coordinate data, yielding a resolution of a 1/70 wing beating cycle of 15Hz flapping. The trajectory information is first demonstrated as the moving boundaries of an unsteady flow simulation around a flapping flexible wing.
机译:提出了一种使用两个高速相机的三维(3D)轨迹检测框架,用于微空气 - 车辆(MAV)的拍打柔性翼。 这个称为“金侦听”的MAV,有8分钟的成功飞行记录。 我们用九个发光二极管(LED)阵列嵌入柔性翅膀,作为光增强标记物,并用聚对二甲苯(聚对二甲基甲苯)作为保护层胶囊。 我们使用时变坐标数据确认了这个MAV翼的八个轨迹的斜形图。 主翼'型材的相应机翼经受时变的坐标数据,产生15Hz拍打的1/70翼击打循环的分辨率。 首先将轨迹信息作为围绕漂移柔性翼的非定常流模拟的移动边界。

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