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Remote Sensing of Aboveground Biomass in Tropical Secondary Forests: A Review

机译:热带次生林地上生物量的遥感研究进展

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Tropical landscapes are, in general, a mosaic of pasture, agriculture, and forest undergoing various stages of succession. Forest succession is comprised of continuous structural changes over time and results in increases in aboveground biomass (AGB). New remote sensing methods, including sensors, image processing, statistical methods, and uncertainty evaluations, are constantly being developed to estimate biophysical forest changes. We review 318 peer-reviewed studies related to the use of remotely sensed AGB estimations in tropical forest succession studies and summarize their geographic distribution, sensors and methods used, and their most frequent ecological inferences. Remotely sensed AGB is broadly used in forest management studies, conservation status evaluations, carbon source and sink investigations, and for studies of the relationships between environmental conditions and forest structure. Uncertainties in AGB estimations were found to be heterogeneous with biases related to sensor type, processing methodology, ground truthing availability, and forest characteristics. Remotely sensed AGB of successional forests is more reliable for the study of spatial patterns of forest succession and over large time scales than that of individual stands. Remote sensing of temporal patterns in biomass requires further study, in particular, as it is critical for understanding forest regrowth at scales useful for regional or global analyses.
机译:通常,热带景观是牧场,农业和森林的马赛克,经历了不同的演替阶段。森林演替包括随时间变化的连续结构变化,并导致地上生物量(AGB)的增加。不断开发新的遥感方法,包括传感器,图像处理,统计方法和不确定性评估,以估算生物物理森林的变化。我们回顾了318篇与热带森林演替研究中使用遥感AGB估计有关的同行评审研究,并总结了它们的地理分布,使用的传感器和方法以及最常见的生态推断。遥感AGB广泛用于森林管理研究,保护状况评估,碳源和汇调查以及环境条件与森林结构之间关系的研究。人们发现,AGB估计的不确定性存在异质性,与传感器类型,处理方法,地面实况可得性和森林特征有关。对于研究森林演替的空间格局以及在较大的时间尺度上,与单个林分相比,遥感的演替森林AGB更可靠。特别是对生物量中时间模式的遥感需要进一步研究,因为这对于了解对区域或全球分析有用的森林再生至关重要。

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