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Performance of High-Rate Kinematic GPS During Strong Shaking: Observations from Shake Table Tests and the 2010 Chile Earthquake

机译:高速运动GPS在强震过程中的性能:通过振动台测试和2010年智利地震的观察

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Over the last decade, the 1-sample-per-second kinematic Global Positioning System (GPS) has been used as a displacement sensor in earthquake observations and for structural health monitoring. Many researchers in both seismology and engineering have expressed the desire for higher-sample-rate (10-sample-per-second or higher) GPS data to acquire high-frequency displacement information. We performed several shake table tests of GPS observation on 29 April, 2009 for the purpose of evaluating the performance of high-rate kinematic GPS. We found that the accuracy of high-rate kinematic GPS depended on antenna movement, but was independent of receiver sampling rate. The errors in kinematic GPS measurements during the periods of strong shaking were systematically larger than those during the static periods. Furthermore, we found that these large errors were coincident with large accelerations and jerks in the motions experienced by the GPS receivers and antennas. Observations from the 2010 earthquake in Maule, Chile (M 8.8) indicated that strong ground motions can degrade the accuracy of high-rate kinematic GPS measurements. Significant jerks and/or accelerations can cause GPS units to temporarily lose tracking on satellite signals and lead to gaps in GPS-recorded seismograms.
机译:在过去的十年中,每秒1个样本的运动学全球定位系统(GPS)被用作位移传感器,用于地震观测和结构健康监测。地震学和工程学领域的许多研究人员都表示希望获得更高的采样率(每秒10个采样或更高)的GPS数据来获取高频位移信息。为了评估高速运动GPS的性能,我们于2009年4月29日进行了几次GPS观测的振动台测试。我们发现高速运动GPS的精度取决于天线的运动,但与接收器的采样率无关。系统性GPS测量结果在剧烈晃动期间的误差有系统地大于静态期间的误差。此外,我们发现这些大误差与GPS接收器和天线所经历的运动中的大加速度和猛跳同时发生。从2010年智利莫尔地震(M 8.8)观察到,强烈的地面运动会降低高速运动学GPS测量的准确性。猛烈的晃动和/或加速度会导致GPS装置暂时失去对卫星信号的跟踪,并导致GPS记录的地震图中出现间隙。

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