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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >On robust and reliable automated baseline corrections for strong motion seismology
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On robust and reliable automated baseline corrections for strong motion seismology

机译:针对强震运动的可靠可靠的自动基线校正

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Computation of displacements from strong motion inertial sensors is to date an open problem. Two distinct methodologies have been proposed to solve it. One involves baseline corrections determined from the inertial data themselves and the other a combination with other geophysical sensors such as GPS. Here we analyze a proposed automated baseline correction algorithm using only accelerometer data and compare it to the results from the real-time combination of strong motion and GPS data. The analysis is performed on 48 collocated GPS and accelerometers in Japan that recorded the 2011 Mw 9.0 Tohoku-oki earthquake. We study the time and frequency domain behavior of both methodologies. We find that the error incurred from automated baseline corrections that rely on seismic data alone is complex and can be large in both the time and frequency domains of interest in seismological and engineering applications. The GPS/accelerometer combination has no such problems and can adequately recover broadband strong motion displacements for this event. The problems and ambiguities with baseline corrections and the success of the GPS/accelerometer combination lead us to advocate for instrument collocations as opposed to automated baseline correction algorithms for accelerometers. Key Points We evaluate the performance of baseline correction The error in the corrections is in the frequencies of interest to seismology Algorithms that combine multiple types of data perform best
机译:迄今为止,来自强运动惯性传感器的位移的计算是一个未解决的问题。已经提出了两种不同的方法来解决它。一种涉及从惯性数据本身确定的基线校正,另一种涉及与其他地球物理传感器(如GPS)的组合。在这里,我们仅使用加速度计数据分析提出的自动基线校正算法,并将其与强运动和GPS数据的实时组合结果进行比较。该分析是在日本48台并置的GPS和加速度计上进行的,这些GPS和加速度计记录了2011年Mw 9.0东北大地震。我们研究两种方法的时域和频域行为。我们发现,仅依靠地震数据进行的自动基线校正所引起的误差是复杂的,并且在地震学和工程应用中所关注的时域和频域都可能很大。 GPS /加速度计组合不存在此类问题,并且可以针对此事件适当地恢复宽带强运动位移。基线校正的问题和不确定性以及GPS /加速度计组合的成功使我们提倡仪器搭配,而不是加速度计的自动基线校正算法。关键点我们评估基线校正的性能校正中的错误在于地震学关注的频率结合多种类型数据的算法表现最佳

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