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Applications of unmanned aerial vehicles in intertidal reef monitoring

机译:无人机在潮间带监测中的应用

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摘要

Monitoring of intertidal reefs is traditionally undertaken by on-ground survey methods which have assisted in understanding these complex habitats; however, often only a small spatial footprint of the reef is observed. Recent developments in unmanned aerial vehicles (UAVs) provide new opportunities for monitoring broad scale coastal ecosystems through the ability to capture centimetre resolution imagery and topographic data not possible with conventional approaches. This study compares UAV remote sensing of intertidal reefs to traditional on-ground monitoring surveys, and investigates the role of UAV derived geomorphological variables in explaining observed intertidal algal and invertebrate assemblages. A multirotor UAV was used to capture <1 cm resolution data from intertidal reefs, with on-ground quadrat surveys of intertidal biotic data for comparison. UAV surveys provided reliable estimates of dominant canopy-forming algae, however, understorey species were obscured and often underestimated. UAV derived geomorphic variables showed elevation and distance to seaward reef edge explained 19.7% and 15.9% of the variation in algal and invertebrate assemblage structure respectively. The findings of this study demonstrate benefits of low-cost UAVs for intertidal monitoring through rapid data collection, full coverage census, identification of dominant canopy habitat and generation of geomorphic derivatives for explaining biological variation.
机译:传统上,潮间礁的监测是通过地面调查方法进行的,这些方法有助于了解这些复杂的生境;但是,通常只观察到很小的珊瑚礁空间足迹。无人飞行器(UAV)的最新发展通过捕获厘米分辨率的图像和地形数据的能力提供了监视常规沿海生态系统的新机会,而常规方法则无法实现。这项研究将无人机对潮间礁的遥感与传统的地面监测调查进行了比较,并研究了无人机衍生的地貌变量在解释潮间带藻类和无脊椎动物组合中的作用。使用多旋翼无人机从潮间带珊瑚礁捕获小于1 cm分辨率的数据,并进行潮间带生物数据的地面正交调查以进行比较。无人机调查提供了对主要树冠形成藻类的可靠估计,但是,层下物种被遮盖并且经常被低估。 UAV衍生的地貌变量显示海拔和到沿海礁石边缘的距离分别解释了藻类和无脊椎动物组合结构的变化的19.7%和15.9%。这项研究的结果通过快速的数据收集,全面的普查,确定主要的树冠栖息地以及生成用于解释生物变异的地貌衍生物,证明了低成本无人机在潮间带监测中的优势。

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