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首页> 外文期刊>Remote Sensing >Investigation of Slow-Moving Landslides from ALOS/PALSAR Images with TCPInSAR: A Case Study of Oso, USA
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Investigation of Slow-Moving Landslides from ALOS/PALSAR Images with TCPInSAR: A Case Study of Oso, USA

机译:TCPInSAR技术从ALOS / PALSAR影像中研究慢速滑坡:以美国奥索为例

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Monitoring slope instability is of great significance for understanding landslide kinematics and, therefore, reducing the related geological hazards. In recent years, interferometric synthetic aperture radar (InSAR) has been widely applied to this end, especially thanks to the prompt evolution of multi-temporal InSAR (MTInSAR) algorithms. In this paper, temporarily-coherent point InSAR (TCPInSAR), a recently-developed MTInSAR technique, is employed to investigate the slow-moving landslides in Oso, U.S., with 13 ALOS/PALSAR images. Compared to other MTInSAR techniques, TCPInSAR can work well with a small amount of data and is immune to unwrapping errors. Furthermore, the severe orbital ramps emanated from the inaccurate determination of the ALOS satellite’s state vector can be jointly estimated by TCPInSAR, resulting in an exhaustive separation between the orbital errors and displacement signals. The TCPInSAR-derived deformation map indicates that the riverside slopes adjacent to the North Fork of the Stillaguamish River, where the 2014 mudslide occurred, were active during 2007 and 2011. Besides, Coal Mountain has been found to be experiencing slow-moving landslides with clear boundaries and considerable magnitudes. The Deer Creek River is also threatened by a potential landslide dam due to the creeps detected in a nearby slope. The slope instability information revealed in this study is helpful to deal with the landslide hazards in Oso.
机译:监测边坡失稳对理解滑坡运动学具有重要意义,因此,减少相关的地质灾害。近年来,干涉合成孔径雷达(InSAR)已被广泛应用于此目的,尤其是由于多时相InSAR(MTInSAR)算法的迅速发展。本文采用最近开发的MTInSAR技术临时相干点InSAR(TCPInSAR)技术,通过13张ALOS / PALSAR图像研究了美国奥索的慢速滑坡。与其他MTInSAR技术相比,TCPInSAR可以很好地处理少量数据,并且不受解包错误的影响。此外,TCPInSAR可以共同估算出由于ALOS卫星状态矢量的不正确确定而产生的严重轨道坡度,从而导致轨道误差与位移信号之间的彻底隔离。由TCPInSAR得出的变形图表明,与斯蒂拉瓜米什河北叉(2014年发生泥石流)相邻的河边坡在2007年和2011年处于活动状态。边界和相当大的规模。迪尔克里克河还因附近斜坡上发现的蠕变而受到潜在滑坡坝的威胁。该研究揭示的边坡失稳信息有助于解决奥索的滑坡灾害。

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