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Experimental Assessment of Local Weather Forecasts for Small Unmanned Aircraft Flight

机译:小型无人机飞行当地天气预报的实验评估

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Control of small unmanned aircraft systems (sUAS) is heavily influenced by the local wind field characteristics. Small UAS missions are often contained within sub-grid regions of current numerical weather prediction (NWP) model outputs. For example, state-of-the-art forecasting tools, such as the High Resolution Rapid Refresh model, cannot resolve the local-scale wind field that can have an impact on sUAS missions. NCAR has been developing a coupled Weather Research and Forecasting - Large Eddy Simulation (WRF-LES) capability, a 100-meter resolution NWP model that has the potential to be used by sUAS applications. The present work compares sUAS measurements of temperature, humidity and wind speed to those obtained with a realtime implementation of WRF-LES. Initial results suggest both model and sUAS measurement biases and uncertainties need to be addressed more comprehensively before WRF-LES forecasts can be used in path planning applications for sUAS.
机译:小型无人机系统(sUAS)的控制受到当地风场特性的严重影响。小型UAS任务通常包含在当前数值天气预报(NWP)模型输出的子网格区域内。例如,最先进的预测工具(例如“高分辨率快速刷新”模型)无法解决可能对sUAS任务产生影响的局部风场。 NCAR已开发了天气研究与预报的耦合-大涡模拟(WRF-LES)功能,这是一种100米分辨率的NWP模型,有可能被sUAS应用程序使用。本工作将sUAS对温度,湿度和风速的测量结果与通过实时实施WRF-LES获得的测量结果进行了比较。初步结果表明,在将WRF-LES预测用于sUAS的路径规划应用之前,需要更全面地解决模型和sUAS的测量偏差和不确定性。

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