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Unmanned Aerial Survey of Fallen Trees in a Deciduous Broadleaved Forest in Eastern Japan

机译:日本东部落叶阔叶林中倒下的树木的无人航空测量

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摘要

Since fallen trees are a key factor in biodiversity and biogeochemical cycling, information about their spatial distribution is of use in determining species distribution and nutrient and carbon cycling in forest ecosystems. Ground-based surveys are both time consuming and labour intensive. Remote-sensing technology can reduce these costs. Here, we used high-spatial-resolution aerial photographs (0.5–1.0 cm per pixel) taken from an unmanned aerial vehicle (UAV) to survey fallen trees in a deciduous broadleaved forest in eastern Japan. In nine sub-plots we found a total of 44 fallen trees by ground survey. From the aerial photographs, we identified 80% to 90% of fallen trees that were >30 cm in diameter or >10 m in length, but missed many that were narrower or shorter. This failure may be due to the similarity of fallen trees to trunks and branches of standing trees or masking by standing trees. Views of the same point from different angles may improve the detection rate because they would provide more opportunity to detect fallen trees hidden by standing trees. Our results suggest that UAV surveys will make it possible to monitor the spatial and temporal variations in forest structure and function at lower cost.
机译:由于倒下的树木是生物多样性和生物地球化学循环的关键因素,因此有关其空间分布的信息可用于确定森林生态系统中的物种分布以及养分和碳循环。地面调查既费时又费力。遥感技术可以降低这些成本。在这里,我们使用了从无人飞行器(UAV)拍摄的高分辨率的航拍照片(每像素0.5-1.0 cm)来调查日本东部落叶阔叶林中倒下的树木。通过地面调查,我们在9个子图中共发现了44棵倒下的树木。从航拍照片中,我们确定了80%至90%的倒下树木直径大于30厘米或长度大于10 m,但错过了许多更窄或更短的树木。这种失败可能是由于倒下的树木与立木的树干和树枝的相似性或被立木掩盖的缘故。从不同角度观看同一点的视图可能会提高检测率,因为它们将提供更多机会来检测被立木掩盖的倒下的树木。我们的结果表明,无人机调查将有可能以较低的成本监测森林结构和功能的时空变化。

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