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Influence of Vegetation Growth on the Polarimetric Zero-Baseline DInSAR Phase Diversity—Implications for Deformation Studies

机译:植被生长对极化零基线DInSAR相分集的影响-变形研究的意义

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The polarization diversity of the phase causes ambiguities in the estimation of displacements using differential interferometry. Over natural surfaces such as vegetated areas, the magnitude of these ambiguities is potentially related to complex dynamic processes such as vegetation growth. As the properties and possible origins of such diversity (besides noiselike influences) over changing vegetation canopies are virtually unknown, we propose to investigate them empirically using an L-band zero-baseline data set covering one growing season over different agricultural crops. We frequently observe HH–VV phase differences exceeding , corresponding to a displacement discrepancy of 3 cm. The HH–VV phase difference and other properties of the polarimetric coherence regions (e.g., the shape and the relation to the observed biomass) vary with the crop type. The observations over wheat and barley and, to a lesser extent, rape suggest the presence of birefringence within the canopy. By contrast, those over maize and sugar beet, while also showing phase diversity, cannot be explained by birefringence or similarly simple models. Irrespective of the origin of this dependence, its presence and systematic nature indicate the potential importance of vegetation effects in differential interferometry, which may limit the accuracy of the estimated deformations over vegetated areas.
机译:该相位的极化分集在使用差分干涉法估算位移时会引起歧义。在诸如植被区等自然表面上,这些歧义的大小可能与诸如植被生长等复杂的动态过程有关。由于这种多样性(除了像噪声一样的影响)在不断变化的植被冠层上的特性和可能的​​起源实际上是未知的,因此我们建议使用L波段零基线数据集进行实证研究,该数据集涵盖不同农作物的一个生长季节。我们经常观察到HH–VV相差超过,对应于3 cm的位移差异。 HH-VV相位差和极化相干区域的其他属性(例如形状和与观察到的生物量的关系)随作物类型而变化。对小麦和大麦以及油菜(程度较小)的观察表明,树冠内存在双折射。相比之下,玉米和甜菜上的那些虽然也表现出相多样性,但不能用双折射或类似的简单模型来解释。无论这种依赖的起源如何,其存在和系统性质都表明植被效应在差分干涉法中的潜在重要性,这可能会限制植被区上估计的变形的准确性。

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