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Crown typology and the identification of rain forest trees on large-scale aerial photographs

机译:大型航空照片上的冠状类型学和雨林树木的识别

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This paper assesses the potential of large-scale aerial photographs for the identification of rain forest trees. Colour slides at 1: 3000 scale were acquired in French Guiana, above the canopy of a 25 ha study site where trees had already been identified. Firstly, the stereoscopic analysis of photographic prints served to establish a typology of the crowns, based on seven main classes of criteria: crown size, crown status, crown contour, crown architecture, foliage cover, foliage texture and colour, completed where possible by information on phenology. The terminology chosen was based on those proposed in previous studies. Secondly, a smaller area of 5 ha was delimited in the field, on which 15 tree categories (vernacular names) represented by 5 crowns or more on the photographs were selected. For each category, a standard crown was described using terminology previously defined. Twelve tree categories, including first and second class commercial timbers, displayed specific characteristics allowing them to be identified on aerial photographs. Further analyses will be undertaken in the future to measure the success of this identification method. This method may be applied for the recognition of particular species of interest: commercial, rare, endemic or key-stone species. Phenological data, as well as information on crown architectural development, can also be retrieved from aerial photographs, bringing new prospects for a better knowledge of crowns biology and their functional role in the forest ecosystem.
机译:本文评估了大规模航空照片识别雨林树木的潜力。在法属圭亚那购买了比例为1:3000的彩色幻灯片,该幻灯片位于一个25公顷研究场地的树冠上方,该地方已经确定了树木。首先,根据七个主要标准:冠的尺寸,冠的状态,冠的轮廓,冠的结构,枝叶的覆盖物,枝叶的质地和颜色,通过可能的信息来完成,对照片的立体分析有助于确定冠的类型。在物候学上。选择的术语是基于先前研究中提出的术语。其次,在田野中划定了一个5公顷的较小区域,在该区域上选择了15张树木类别(乡土名称),这些类别由照片上的5个或更多的树冠代表。对于每个类别,使用先前定义的术语描述了标准表冠。十二类树种,包括一等和二等商品木材,显示出特定的特征,使它们可以在航空照片中识别。将来将进行进一步的分析以衡量这种识别方法的成功。该方法可用于识别特定的特定物种:商业,稀有,特有或关键物种。还可从航空照片中检索物候数据以及有关树冠建筑发展的信息,从而为更好地了解树冠生物学及其在森林生态系统中的功能作用带来了新的前景。

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