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Influence of forest disturbances on backscatter of the airborne L-band synthetic-aperture radar in a larch forest in northern Japan

机译:森林干扰对日本北部落叶松林中机载L带合成孔径雷达的后向散射的影响

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This paper is a case study on the detection of forest disturbances in airborne synthetic-aperture radar (SAR) data. We investigated changes in the L-band SAR backscattering coefficient (σ0) following thinning and a typhoon in a larch forest in northern Japan. The thinning caused changes of intermediate magnitude in the above-ground biomass (AGB), whereas the typhoon broke or uprooted most of the trees, thereby significantly changing the forest structure without changing the biomass. Thinning led to back-scattering coefficients change of less than about 1 dB; HV polarization was most sensitive to the change in AGB, and HH was insensitive to it. In the case of the typhoon, VV was sensitive to the change in forest structure, whereas HH and HV were insensitive to it, suggesting that the tree trunks, which were felled in one direction by the typhoon, enhanced the backscattering signal of the polarisation that accorded with the trunk direction.
机译:本文以机载合成孔径雷达(SAR)数据中森林干扰的检测为例。在日本北部的落叶松林中,研究了稀疏和台风之后L带SAR反向散射系数(σ 0 )的变化。疏伐导致地上生物量(AGB)发生中等幅度的变化,而台风使大多数树木折断或连根拔起,从而在不改变生物量的情况下显着改变了森林结构。变薄导致反向散射系数变化小于约1 dB; HV极化对AGB的变化最敏感,而HH对AGB的变化不敏感。在台风的情况下,VV对森林结构的变化敏感,而HH和HV对它的变化不敏感,这表明被台风沿一个方向掉落的树干增强了极化的后向散射信号。符合躯干方向。

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