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首页> 外文期刊>International journal of applied earth observation and geoinformation >Modeling Mediterranean forest structure using airborne laser scanning data
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Modeling Mediterranean forest structure using airborne laser scanning data

机译:建模地中海森林结构采用空机激光扫描数据

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The conservation of biological diversity is recognized as a fundamental component of sustainable development, and forests contribute greatly to its preservation. Structural complexity increases the potential biological diversity of a forest by creating multiple niches that can host a wide variety of species. To facilitate greater understanding of the contributions of forest structure to forest biological diversity, we modeled relationships between 14 forest structure variables and airbdrne laser scanning (ALS) data for two Italian study areas representing two common Mediterranean forests, conifer plantations and coppice oaks subjected to irregular intervals of unplanned and non-standard silvicultural interventions. The objectives were twofold: (i) to compare model prediction accuracies when using two types of ALS metrics, echo-based metrics and canopy height model (CHM)-based metrics, and (ii) to construct inferences in the form of confidence intervals for large area structural complexity parameters.
机译:生物多样性的保护被认为是可持续发展的基本组成部分,森林对其保存有很大贡献。结构复杂性通过创建可以举办各种各样的物种的多种核心来增加森林的潜在生物多样性。为了促进对森林结构对森林生物多样性的贡献,我们建模了14个森林结构变量和AIRBDRNE激光扫描(ALS)数据的建模,两种意大利研究领域代表两个常见的地中海森林,针叶树种植园和COPPICE OAK受到不规则的计划生育和非标准造林干预的间隔。目标是双重的:(i)在使用两种类型的ALS度量,基于ALS度量,基于回声的度量和冠层高度模型(CHM)的度量标准时进行比较模型预测准确性,并且(ii)以置信区间的形式构建推断大面积结构复杂性参数。

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