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A Wind Estimation Method with an Unmanned Rotorcraft for Environmental Monitoring Tasks

机译:用于环境监测任务的无人旋翼飞机风估计方法

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摘要

Wind velocity (strength and direction) is an important parameter for unmanned aerial vehicle (UAV)-based environmental monitoring tasks. A novel wind velocity estimation method is proposed for rotorcrafts. Based on an extended state observer, this method derives the wind disturbance from rotors’ speeds and rotorcraft’s acceleration and position. Then the wind disturbance is scaled to calculate the airspeed vector, which is substituted into a wind triangle to obtain the wind velocity. Easy-to-implement methods for calculating the rotorcraft’s thrust and drag coefficient are also proposed, which are important parameters to obtain the wind drag and the airspeed, respectively. Simulations and experiments using a quadrotor in both hovering and flight conditions have validated the proposed method.
机译:风速(强度和方向)是基于无人机(UAV)的环境监测任务的重要参数。提出了一种新颖的旋翼飞机风速估计方法。该方法基于扩展的状态观测器,可从旋翼的速度以及旋翼航空器的加速度和位置得出风干扰。然后,对风干扰进行缩放以计算空速矢量,将其替换为风三角形以获得风速。还提出了易于实现的计算旋翼飞机的推力和阻力系数的方法,这是分别获得风阻和空速的重要参数。在悬停和飞行条件下使用四旋翼的仿真和实验已经验证了该方法的有效性。

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