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Dynamics of Micro-Air-Vehicle with Flapping Wings

机译:带有拍打翼的微型空气动力学

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Small (approximately 6 inch long, or hand-held) reconnaissance micro air vehicles (MAVs) will fly inside buildings, and require hover for observation, and agility at low speeds to move in confined spaces. For this flight envelope insect-like flapping wings seem to be an optimal mode of flying. Investigation of the aerodynamics of flapping wing MAVs is very challenging. The problem involves complex unsteady, viscous flow (mainly laminar), with the moving wing generating vortices and interacting with them. At this early stage of research only a preliminary insight into the nature of the little known aerodynamics of MAVs has been obtained. This paper describes computational models for simulation of the controlled motion of a microelectromechanical flying insect - entomopter. The design of software simulation for entomopter flight (SSEF) is presented. In particular, we will estimate the flight control algorithms and performance for a Micromechanical Flying Insect (MFI), a 80-100 mm (wingtip-to-wingtip) device capable of sustained autonomous flight. The SSEF is an end-to-end tool composed of several modular blocks which model the wing aerodynamics and dynamics, the body dynamics, and in the future, the environment perception, control algorithms, the actuators dynamics, and the visual and inertial sensors. We present the current state of the art of its implementation, and preliminary results.
机译:小型(大约6英寸长或手持)侦察微型空中飞行器(MAV)将在建筑物内飞行,并且需要悬停观察,并且必须以低速敏捷才能在密闭空间中移动。对于此飞行信封,像昆虫一样的拍打翅膀似乎是最佳的飞行方式。扑翼式轻型无人机的空气动力学研究非常具有挑战性。问题涉及复杂的不稳定的粘性流(主要是层流),移动的机翼会产生涡旋并与其相互作用。在研究的这一早期阶段,仅获得了对鲜为人知的MAV空气动力学性质的初步了解。本文介绍了一种计算模型,用于模拟微机电飞行昆虫-直翅目昆虫的受控运动。提出了直升机飞行的软件仿真(SSEF)的设计。特别是,我们将估算微机械飞行昆虫(MFI)的飞行控制算法和性能,MFI是一种能够持续自主飞行的80-100毫米(机翼到机翼)装置。 SSEF是一个端到端工具,由几个模块块组成,这些模块对机翼的空气动力学和动力学,车身动力学以及未来的环境感知,控制算法,执行器动力学以及视觉和惯性传感器进行建模。我们介绍了其实施的最新状态以及初步结果。

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