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The Use of a Quadcopter-Mounted Hyper-Spectral Spectrometer for Examining Reflectance in Scottish Coastal Waters

机译:使用四轴飞行器安装的高光谱仪检查苏格兰沿海水域的反射率

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Remote sensing of the marine coastal environment is useful for obtaining information about processes occurring within it. Monitoring has traditionally been carried out in situ, before investment increased in remote techniques such as manned planes and satellites. This paper proposes the use of remotely piloted aircraft systems (RPAS) as an alternative platform, with an aim of increasing the spectral, spatial and temporal resolution of data whilst reducing the associated costs and risks. A custom-built `spectro-copter' system, comprising of an integrated dual field-of-view, miniaturised, hyper-spectral spectrometer aboard a purpose-built quadcopter is presented, developed at the Scottish Association for Marine Science (SAMS), Oban. This has been produced with a view to investigating reflectance from Scottish coastal waters, which can give inferences as to the concentrations of various constituents present [1], [2]. Initial test flights show the `spectro-copter' system is capable of flights of ~ 20 minutes, sufficient for meaningful data collection, despite late adjustments incurring increased weight and an associated reduction in efficiency. Early results demonstrate that the setup is capable of discerning differences in R at a high spectral resolution. Further work is ongoing in order to assess the capacity for establishing this equipment as a routine technique for the monitoring of coastal harmful algal blooms (HAB), which currently relies upon physical sampling in combination with satellites. HAB events are noted to be increasing in severity and frequency [3], [4], with knock-on health and economic impacts, particularly for the rising aquaculture industry in Scottish coastal waters [5]. Therefore advancement of an alternative, affordable technique would be extremely beneficial.
机译:海洋沿海环境的遥感对于获取有关其中发生的过程的信息很有用。传统上,监视是在就地进行的,然后增加了对远程技术(如有人驾驶飞机和卫星)的投资。本文提出使用遥控飞机系统(RPAS)作为替代平台,目的是增加数据的光谱,空间和时间分辨率,同时降低相关的成本和风险。介绍了由奥本苏格兰海洋科学协会(SAMS)开发的,定制的“光谱直升机”系统,该系统由专用四轴飞行器上的集成双视场,小型化,高光谱光谱仪组成。 。产生此结果是为了研究苏格兰沿海水域的反射率,可以推断出目前存在的各种成分的浓度[1],[2]。最初的试飞显示,“光谱直升机”系统能够飞行约20分钟,足以进行有意义的数据收集,尽管后期调整会导致重量增加和效率降低。早期结果表明,该装置能够在高光谱分辨率下分辨出R中的差异。为了评估将这种设备作为监测沿海有害藻华(HAB)的常规技术的能力,目前正在进行进一步的工作,该技术目前依赖于结合卫星的物理采样。有人指出,HAB事件的严重性和频率正在增加[3],[4],对健康和经济产生连锁反应,特别是对于苏格兰沿海水域中正在兴起的水产养殖业[5]。因此,替代性的,负担得起的技术的进步将是极其有益的。

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