利用δ t映射进行近场地震定位

SHI Peng-Cheng, WANG Yuan, YOU Qing-Yu
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摘要

近场地震定位在现实世界中有着重要的意义和广泛的应用,例如定位爆炸或跟踪交通运动。由于速度结构未知和精度要求高,传统的远场方法在此受到限制。本文首次将声发射探测中的Delta T Mapping (DTM)技术应用于近场地震定位。DTM首先需要构造一个首到差的映射,以此为基础进行后续定位。建立该模型的方法有两种:(1)网格搜索法:利用线性散点插值获得更高分辨率的新DTM;(2)统计定位法:利用高斯过程回归建立从T到位置的映射。实验在北京郊区140 m×90 m的范围内进行。定位误差为0.5 ~ 5.1 m。结果表明,DTM方法可靠、精度高,适合实时应用于近场地震定位。通过源和接收机的切换,可以在获得高精度DTM的同时,进一步降低学习DTM和分析数据的成本。此外,结合源扫描算法在多源定位方面具有一定的潜力。
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NEAR-FIELD SEISMIC LOCALIZATION USING DELTA T MAPPING

Near-field seismic localization has important significance and wide applications in the real world, for instance, locating explosions or tracking traffic movements. The traditional methods designed for far-field scenarios are limited here due to the unknown velocity structures and high accuracy demands. This paper, for the first time, applied the Delta T Mapping (DTM) technique from acoustic emission detection in near-field seismic localization. DTM first needs to construct a mapping of the difference of first arrivals on which the following locating is based. There are two approaches for establishing such model: (1) grid search method: using linear scattered point interpolation to obtain new DTM of higher resolution; (2) statistical locating method: using Gaussian Process Regression to build the mapping from Delta T to positions. The experiment was conducted in an area of 140 m×90 m in the suburb of Beijing. The locating error was 0.5∼5.1 m. The results showed that DTM is reliable, highly accurate and suitable for real-time use for near-field seismic localization. The cost of learning DTM and analyzing data could be further decreased while obtaining highly accurate DTM by switching the sources and receivers. Furthermore, combining source-scan algorithm has certain potential to locate multi-sources.

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