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首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Feasibility Study of C- and L-band SAR Time Series Data in Tracking Indonesian Plantation and Natural Forest Cover Changes
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Feasibility Study of C- and L-band SAR Time Series Data in Tracking Indonesian Plantation and Natural Forest Cover Changes

机译:C波段和L波段SAR时间序列数据在跟踪印度尼西亚人工林和天然林覆盖率变化中的可行性研究

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摘要

Tropical coverage by Envisat ASAR is sparse in space and time and has limited value for monitoring deforestation. The only available dual-polarized multitemporal dataset over Riau province, Indonesia (nine images in a single year), is used to distinguish and monitor tropical plantations and their dynamics and is compared with annual L-band PALSAR data and land cover maps derived from Landsat data. For the ASAR data, both VV and VH are important in discriminating different types of forest cover; whereas, at L-band, most of the relevant information is in the cross-polarized channel. The ASAR VV (but not the VH) backscatter from acacia plantations is strongly affected by whether the underlying soil is peat or nonpeat, which affects the separability of acacia from oil palm. Maximum likelihood classification of the C-band data gave overall accuracies of 86.2% and kappa coefficient of 0.78 by comparison with land cover maps derived from optical data. This was not improved by combining C- and L-band data. Classification of the C-band time series allows the rotation cycle of acacia plantations to be tracked. The available 4-year annual L-band time series shows potential for monitoring these dynamics, but the 1-year time spacing increases the risk of missing changes masked by the rapid growth of acacia.
机译:Envisat ASAR对热带的覆盖在空间和时间上都很稀疏,对于监测森林砍伐的价值有限。印度尼西亚廖内省唯一可用的双极化多时相数据集(一年内有九张图像),用于区分和监测热带种植园及其动态,并与来自Landsat的年度L波段PALSAR数据和土地覆盖图进行了比较数据。对于ASAR数据,VV和VH在区分不同类型的森林覆盖率方面都很重要。而在L波段,大多数相关信息在交叉极化信道中。相思树人工林的ASAR VV(但不是VH)反向散射受下面土壤是泥炭还是非豌豆的强烈影响,这影响了相思树与油棕的可分离性。与从光学数据得出的土地覆盖图相比,C波段数据的最大似然分类给出了86.2%的总体准确度和0.78的卡伯系数。合并C波段和L波段数据并不能改善这一点。 C波段时间序列的分类可以跟踪相思树人工林的旋转周期。可用的4年年度L波段时间序列显示出监测这些动态的潜力,但是1年时间间隔增加了因阿拉伯胶快速增长而掩盖变化的风险。

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