基于Magnus效应的导管扇无人机气动特性分析及鲁棒性分析

Jie Zhao, Qingming Hou, Hongzhe Jin, Jihong Yan, Yanhe Zhu, Ge Li
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引用次数: 2

摘要

本文提出了一种新的风管式无人飞行器(DFUAV)作动系统。执行器系统由四个对称安装在内风道底部的旋转气缸组成。用于姿态稳定的力是由旋筒表面与下冲气流之间的相互作用产生的,称为马格努斯效应。本文采用计算流体动力学(CFD)方法对DFUAV进行了特性仿真分析,设计了基于级联系统建模和推力参数化的DFUAV控制器,并进行了鲁棒性分析。
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Aerodynamic characteristics analysis and robustness analysis of ducted-fan UAV based on Magnus effect
In this paper, a new actuator system of the ducted-fan Uninhabited Aerial Vehicle(DFUAV) is presented. The actuator system consists of four rotary cylinders which are symmetrically installed at bottom of inside duct. The force used for attitude stabilization is generated by the interaction between the surface of rotary cylinder and the downwash, which is known as Magnus effect. In this paper, the characteristics analysis of the presented DFUAV was simulated by Computational Fluid Dynamics (CFD) method, the controller based on the cascaded system modeling and the parameterization of thrust of DFUAV is designed and the robustness analysis is conducted.
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