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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Potential value of combining ALOS PALSAR and Landsat-derived tree cover data for forest biomass retrieval in Madagascar
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Potential value of combining ALOS PALSAR and Landsat-derived tree cover data for forest biomass retrieval in Madagascar

机译:结合Alos Palsar和Landsat衍生的树木覆盖数据在马达加斯加森林生物量检索的潜在价值

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摘要

Reducing carbon emissions from deforestation and degradation (REDD) requires detailed insight into how the forest biomass is measured and distributed. Studies so far have estimated forest biomass stocks using rough assumptions and unreliable data. High-resolution data and robust methods are required to capture the spatial variability of forest biomass with sufficient precision. Here we aim to improve on previous approaches by using radar satellite ALOS PALSAR (25-m resolution) and optical Landsat-derived tree cover (30-m resolution) observations to estimate forest biomass stocks in Madagascar, for the years 2007-2010. The radar signal and in situ biomass were highly correlated (R-2 = 0.71) and the root mean square error was 30% (for biomass ranging from 0 to 500 t/ha). Using our map at 25-m resolution for the entire island of Madagascar, we estimated the total above-ground forest carbon for the four years 2007, 2008, 2009 and 2010 to be 1.1173 +/- 0.0304, 1.1029 +/- 0.0303, 1.0916 +/- 0.0301 and 1.0773 +/- 0.0298 PgC, respectively. Carbon stocks were found to have decreased constantly over this period due to anthropogenic deforestation and likely also to climate change. The results are expected to serve as a more accurate benchmark for monitoring progress on REDD and to provide strong supports for current and future spaceborne missions such as ALOS-2, SAOCOM and BIOMASS.
机译:减少砍伐森林和降解(REDD)的碳排放需要详细介绍森林生物量如何测量和分布。到目前为止的研究估计使用粗糙的假设和不可靠的数据估计森林生物量股票。需要高分辨率数据和鲁棒方法来捕获森林生物质的空间变异,具有足够的精度。在这里,我们的目的是通过使用雷达卫星Alos Palsar(25米分辨率)和光学土地衍生的树覆盖(30米分辨率)观察来改善以前的方法,以估算马达加斯加的森林生物量股,2007 - 2010年。雷达信号和原位生物量高度相关(R-2 = 0.71),根部均方误差为30%(对于0至500t / ha的生物质)。我们以25米的Madagascar分辨率为25米的地图,我们估计了2007年407,2008年,2009年和2010年的地上森林碳的总碳碳总量为1.1173 +/- 0.0304,1.1029 +/- 0.0303,1.0916 +/- 0.0301和1.0773 +/- 0.0298 PGC。由于人为砍伐森林砍伐,碳股在此期间不断下降,并且可能还对气候变化也可能降低。预计结果将作为监测REDD进展的更准确的基准,并为当前和未来的星载任务提供强有力的支持,例如Alos-2,Saocom和Biomass。

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