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Flight Testing Boustrophedon Coverage Path Planning for Fixed Wing UAVs in Wind

机译:固定翼无人机在风中的飞行测试Boustrophedon覆盖路径规划

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A method was previously developed by this author to optimise the flight path of a fixed wing UAV performing aerial surveys of complex concave agricultural fields. This relies heavily on a flight time in wind prediction model as its cost function. This paper aims to validate this model by comparing flight test results with the model prediction. There are a number of assumptions that this model relies on. The major assumption is that wind is steady and uniform over the small area and time scales involved in a survey. To show that this is reasonable, wind fields measurements will be taken from a multi rotor UAV with an ultrasonic windspeed sensor.
机译:作者先前已经开发出一种方法,可以对固定翼型无人机的飞行路径进行优化,以对复杂的凹面农田进行空中测量。这在很大程度上取决于风速预测模型中的飞行时间作为其成本函数。本文旨在通过比较飞行测试结果与模型预测来验证该模型。此模型有许多假设。主要假设是,在调查涉及的小区域和时间范围内,风稳定且均匀。为了证明这是合理的,将使用具有超声波风速传感器的多旋翼无人机进行风场测量。

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