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首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Phase Offset Calculation for Airborne InSAR DEM Generation Without Corner Reflectors
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Phase Offset Calculation for Airborne InSAR DEM Generation Without Corner Reflectors

机译:无角反射器的机载InSAR DEM生成的相位偏移计算

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摘要

Digital elevation model (DEM) generation through interferometric processing of synthetic aperture radar (SAR) data requires the calculation of a constant phase offset present in the unwrapped interferograms. This operation is usually carried out by exploiting the external information provided by GPS measurements in correspondence of corner reflectors (CRs) properly deployed over the illuminated area. This is, however, expensive in terms of cost and time. Moreover, deployment of CRs along with the corresponding GPS measurements can be difficult (if not impossible) in unfriendly areas or in natural disaster scenarios. To circumvent these limitations, we address in this work the estimation of the required phase offset by exploiting a low-accuracy external DEM, without using CRs. More specifically, a two-step approach is proposed. The first step exploits the synthetic phase computed by means of the external DEM and represents a straightforward extension of the procedure that is usually applied in the presence of CRs. Subsequently, in order to refine the achieved solution, a second step is introduced. It is based on a least squares approach that properly exploits the difference between the available low-accuracy DEM and the interferometric DEM generated by means of the phase offset value roughly estimated through the first step. The presented approach is very easy to implement and allows us to achieve an accurate and fast estimate of the needed phase offset, even in the presence of an external DEM affected by a vertical bias and/or a planar shift. The algorithm performances improve in the presence of a large variation of the look angle, as it generally happens in airborne systems. On the other side, the effectiveness of the algorithm may be impaired by the possible presence of artifacts in the unwrapped interferograms, such as those due to the residual motion errors typical of repeat-pass airborne SAR scenarios. Accordingly, the proposed solutio- is particularly suitable for single-pass interferometric airborne SAR systems, as demonstrated through the presented experimental results achieved on real data.
机译:通过对合成孔径雷达(SAR)数据进行干涉测量来生成数字高程模型(DEM),需要计算出展开的干涉图中存在的恒定相位偏移。通常通过利用GPS测量提供的外部信息来进行此操作,这些信息对应于在照明区域上正确部署的角反射器(CR)。然而,就成本和时间而言,这是昂贵的。此外,在不友好地区或自然灾害情况下,很难(如果不是不可能的话)部署CR和相应的GPS测量。为了避免这些限制,我们在这项工作中通过使用低精度的外部DEM而不使用CR来解决所需相位偏移的估计。更具体地说,提出了一种两步法。第一步利用了通过外部DEM计算的合成阶段,代表了通常在存在CR的情况下对该过程的直接扩展。随后,为了完善所获得的解决方案,引入了第二步骤。它基于最小二乘法,可正确利用可用的低精度DEM与通过第一步粗略估算的相位偏移值生成的干涉式DEM之间的差异。所提出的方法非常容易实现,即使在受到垂直偏置和/或平面偏移影响的外部DEM的情况下,也可以使我们实现所需相位偏移的准确,快速估算。如在机载系统中通常发生的那样,在存在较大视角变化的情况下,算法的性能会提高。另一方面,未包装的干涉图中可能存在伪像,例如由于重复通过机载SAR场景中典型的残留运动误差而导致的伪像,可能会削弱算法的有效性。因此,所提出的解决方案特别适用于单程干涉式机载SAR系统,这是通过在真实数据上获得的实验结果证明的。

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