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首页> 外文期刊>Journal of geophysical research. Planets >The Search for Active Marsquakes Using Subpixel Coregistration and Correlation: Best Practice and First Results
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The Search for Active Marsquakes Using Subpixel Coregistration and Correlation: Best Practice and First Results

机译:使用子像素核心构成和相关性搜索活跃的大麻:最佳实践和首先结果

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摘要

The state of seismic activity on Mars is currently unknown. On Earth, coseismic displacement has been observed using visible wavelength images and subpixel coregistration and correlation techniques. We apply this method to Mars with the COSI-Corr (Co-registration of Optically Sensed Images and Correlation) software package using High-Resolution Imaging Science Experiment (HiRISE) images, focusing on part of the Cerberus Fossae fault system. We derive best practices for applying this method to the study of coseismic displacements on Mars. Using a time series of eight overlapping HiRISE images, we achieve pixel coregistration with a mean accuracy of about 1/50 of a pixel. We see no clear evidence for coseismic displacement in this region during a time period of over 8 years. One possible displacement signal (1-2 m of west-east displacement over a length scale of about 50 m) that has similarities to terrestrial coseismic deformation was dismissed as the result of incomplete correction of steep topography during the coregistration stage. Ancillary observations of recurring slope lineae (RSL) activity in the surrounding fault system offer no supporting evidence for the occurrence of coseismic displacement but do seem to suggest RSL activity that does not fit into previous seasonal timescales. Although it is unlikely that we have observed coseismic displacement in our study area during this time period, the best practice method and the accuracy of our results offer encouragement for future studies. HiRISE, Context Camera, and Color and Stereo Surface Imaging System images can be used to complement and independently verify in situ seismic observations by the InSight (Interior Exploration using Seismic Investigations, Geodesy, and Heat Transport) lander or source location changes from the ExoMars Trace Gas Orbiter spacecraft.
机译:目前未知火星的地震活动状态。在地球上,使用可见的波长图像和子像素核心和相关技术观察到了coseissic位移。我们使用高分辨率成像科学实验(Hirise)图像的COSI-CORR(光学感知图像和相关性)软件包应用了这种方法,重点放在Cerberus Fossae故障系统的一部分上。我们得出了将这种方法应用于火星上的coseis震位移的最佳实践。使用八个重叠的Hirise图像的时间序列,我们以大约1/50像素的平均准确度达到像素核心方面。在8年以上,我们没有看到该地区的Coseis震荡的明确证据。一个可能的位移信号(在约50 m的长度尺度上的1-2 m的西方位移)与陆地coseis震动变形相似,这是由于在核心阶段不完全校正了陡峭地形的结果。周围断层系统中经常性斜率线条(RSL)活性的辅助观察没有提供coseissic位移发生的支持证据,但似乎表明RSL活性不适合以前的季节性时间表。尽管我们不太可能在这段时间内观察到研究区域中的coseis震位移,但最佳实践方法和结果的准确性为未来的研究提供了鼓励。海拔,上下文摄像机以及颜色和立体声表面成像系统图像可用于通过洞察力(使用地震调查,地球调查和热传输者的内部探索)或源位置的变化来补充和独立验证原位地震观察(内部探索)。气轨道航天器。

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