Raspini Federico, Bianchini Silvia, Ciampalini Andrea, Del Soldato Matteo, Solari Lorenzo, Novali Fabrizio, Del Conte Sara, Rucci Alessio, Ferretti Alessandro, Casagli Nicola
Earth Sciences Department, University of Firenze, Via La Pira, 4 50121, Firenze, Italy.
Earth Sciences Department, University of Pisa, Via S. Maria 53, 56126, Pisa, Italy.
Sci Rep. 2018 May 8;8(1):7253. doi: 10.1038/s41598-018-25369-w.
We present the continuous monitoring of ground deformation at regional scale using ESA (European Space Agency) Sentinel-1constellation of satellites. We discuss this operational monitoring service through the case study of the Tuscany Region (Central Italy), selected due to its peculiar geological setting prone to ground instability phenomena. We set up a systematic processing chain of Sentinel-1 acquisitions to create continuously updated ground deformation data to mark the transition from static satellite analysis, based on the analysis of archive images, to dynamic monitoring of ground displacement. Displacement time series, systematically updated with the most recent available Sentinel-1 acquisition, are analysed to identify anomalous points (i.e., points where a change in the dynamic of motion is occurring). The presence of a cluster of persistent anomalies affecting elements at risk determines a significant level of risk, with the necessity of further analysis. Here, we show that the Sentinel-1 constellation can be used for continuous and systematic tracking of ground deformation phenomena at the regional scale. Our results demonstrate how satellite data, acquired with short revisiting times and promptly processed, can contribute to the detection of changes in ground deformation patterns and can act as a key information layer for risk mitigation.
我们展示了利用欧洲航天局(ESA)哨兵-1卫星星座对区域尺度地面变形进行的连续监测。我们通过托斯卡纳地区(意大利中部)的案例研究来探讨这项业务监测服务,该地区因其特殊的地质环境容易发生地面不稳定现象而被选中。我们建立了一个哨兵-1数据采集的系统处理链,以创建持续更新的地面变形数据,标志着从基于存档图像分析的静态卫星分析向地面位移动态监测的转变。对位移时间序列进行分析,这些序列会根据最新获取的哨兵-1数据进行系统更新,以识别异常点(即运动动态发生变化的点)。影响受威胁元素的一系列持续异常的存在决定了显著的风险水平,有必要进行进一步分析。在此,我们表明哨兵-1卫星星座可用于区域尺度地面变形现象的连续和系统跟踪。我们的结果表明,以短重访时间获取并迅速处理的卫星数据如何有助于检测地面变形模式的变化,并可作为减轻风险的关键信息层。