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Measurement of three-dimensional surface deformation of the March 2011 Kamoamoa fissure eruption, Kilauea Volcano, Hawai'i

机译:测量2011年3月Kamoamoa Fisure Buluption,Kilauea Volcano,Hawai'i的三维表面变形

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We construct a 3-D surface displacement map for the March 5–9, 2011 Kamoamoa fissure eruption at Kilauea Volcano, Hawai'i, by integration of multitemporal InSAR and multiple aperture interferometry (MAI) measurements from the COSMO-SkyMed SAR system. It was the first attempt to measure along-track displacements by X-band data. In spite of the potential risk of decorrelation by their short-wavelength signal, the high temporal resolution of COSMO-SkyMed provides the opportunity to map the precise 3-D displacement maps effectively. To assess the measurement accuracies of the untested data, a comparison with GPS data has been carried out for multi-stacked MAI interferogram and the 3-D components of surface deformation. Root-mean-square errors of 0.99, 0.80, and 0.65 cm for the east, north, and up components, respectively, support the suitability and effectiveness of COSMO-SkyMed for the 3-D observation.
机译:我们通过从COSMO-SKEMED SAR系统的多型速度和多孔径干涉测量(MAI)测量的集成,构建2011年3月5日至9日3月3日的3D CultaMoa Fisure Buluption 2011年3月5日的Caimooa Fisure Buluption。 这是第一次尝试通过X波段数据逐行衡量位移。 尽管通过其短波长信号进行去相关的潜在风险,但COSMO-SKEDEMED的高时间分辨率提供了有效地映射精确的3-D位数图的机会。 为了评估未测试数据的测量精度,已经为多堆叠MAI干涉图和表面变形的3-D分量进行了与GPS数据的比较。 对于东部,北和UP部件,0.99,0.80和0.65厘米的根均方误差分别支持COSMO-SKEDMED用于3-D观察的适用性和有效性。

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