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ICBM Integrated Combined Baseline Modification: An Algorithm for Segmented Baseline Estimation

机译:ICBM集成组合基线修改:一种分段基线估计的算法

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Accelerograms are the primary source for characterizing strong ground motion. It is therefore of paramount interest to have high-quality recordings free from any nonphysical contamination. Frequently, accelerograms are affected by baseline jumps and drifts, either related to the instrument and/or a major earthquake. In this work, I propose a correction method for these undesired baseline drifts based on segmented linear least squares. The algorithm operates on the integrated waveforms and combines all three instrument components to estimate a model that modifies the baseline to be at zero continuously. The procedure consists of two steps: first a suite of models with variable numbers of discontinuities is derived for all three instrument components. During this process, the number of discontinuities is reduced in a parsimonious way, for example, two very close discontinuities are merged into a single one. In the second step, the optimal model is selected on the basis of the Bayesian information criterion. I exemplify the application on synthetic waveforms with known discontinuities and on observed waveforms from a unified strong-motion database of the Japan Meteorological Agency (JMA) and the National Research Institute for Earth Science and Disaster Prevention (NIED, Japan) networks for the major events of the 2016 Kumamoto earthquakes. After the baseline jump correction, the waveforms are furthermore corrected for displacement according to Wang et al.(2011). The resulting displacements are comparable to the Interferometric Synthetic Aperture Radar-derived displacement estimates for the Kumamoto earthquake sequence.
机译:AcceleroGrams是表征强大地面运动的主要源。因此,令人兴趣的是具有任何非物质污染的高质量录音。通常,加速局部受到基线的影响,与仪器和/或主要地震有关。在这项工作中,我提出了一种基于分段线性最小二乘法的这些不期望的基线漂移的校正方法。该算法在集成的波形上运行,并结合了所有三个仪器组件,以估计将基线连续修改为零的模型。该过程由两个步骤组成:首先为所有三个仪器组件导出具有可变数量不连续的模型套件。在此过程中,不连续性的数量以解析方式降低,例如,两个非常紧密的不连续性合并成一个单个。在第二步中,基于贝叶斯信息标准选择最佳模型。我举例说明了具有已知不连续性的合成波形和来自日本气象学局(JMA)的统一强运动数据库的观察波形以及主要事件的国家地球科学和防灾国家研究所(NIED,日本)网络2016年熊本地震的地震。在基线跳跃校正之后,根据Wang等人,还校正了波形。(2011)。由此产生的位移与熊本曲线序列的干涉性合成孔径雷达导出的位移估计相媲美。

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