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How can the dynamics of the tundra-taiga boundary be remotely monitored?

机译:苔原-taiga边界的动力学如何被远程监控?

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This paper discusses some of the difficulties in establishing the location of the Arctic treeline and forest line on a circumpolar basis, and the contribution that remote sensing, particularly from spaceborne platforms, can make in resolving them. Spaceborne techniques can provide spatial resolutions as fine as a few meters, although the requirements for regional or global coverage are likely to limit the resolution to 30 to 100 m. Since this will preclude the identification of individual trees, the definition of the treeline will be based on statistical parameters estimated from satellite images. The optimum criteria for these parameters remain to be determined. Most remote-sensing observations that are suited to the measurement of the distribution of vegetation, and identification of its type, are based on the visible and near-infrared (VIR) parts of the electromagnetic spectrum, although there is increasing interest in the use of active microwave (radar) techniques. We discuss the basis of both types of approach and the techniques that follow from them, and present 3 case studies from the Russian Arctic.
机译:本文讨论了在极地基础上确定北极林线和林线位置的一些困难,以及遥感技术(特别是来自星载平台的遥感技术)在解决这些问题方面的贡献。尽管对区域或全球覆盖的要求可能会将分辨率限制在30至100 m,但星载技术可以提供高达几米的空间分辨率。由于这将排除对单个树木的识别,因此树线的定义将基于从卫星图像估计的统计参数。这些参数的最佳标准仍有待确定。尽管人们越来越关注使用电磁波谱的可见性和近红外(VIR)部分,但大多数适合于测量植被分布并确定其类型的遥感观测都是基于电磁谱的。有源微波(雷达)技术。我们讨论了这两种方法的基础以及随后的方法,并提出了来自俄罗斯北极地区的3个案例研究。

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