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MR PRISM - A Software Suite for CRISM analysis

机译:MR PRISM-用于CRISM分析的软件套件

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Last year at this meeting we described a computer application (Brown and Storrie-Lombardi, 2006), the Mars Reconnaissance PRISM or MR PRISM, designed to analyze hyperspectral data collected by the Compact Imaging Spectrometer for Mars (CRISM). The application links the spectral, imaging and mapping perspectives on the CRISM dataset by presenting the user with three different ways to analyze the data. At this time last year, CRISM was still in calibration mode and we presented data from ESA's OMEGA instrument to demonstrate the functionality of MR CRISM.A primary goal in developing this application is to make the latest algorithms for detection of spectrally interesting targets available to the Planetary Science community without cost to the individual investigator and with a minimal learning barrier. This would enable the community to look for Mars surface targets such as ices, hydrothermal minerals, sulfate minerals and hydrous minerals and map the extent of these deposits. The CRISM team has now provided significant data sets to our community. We have used one such data set to conduct a study on an exposed water ice mound. We review here our results on observations made of a ~36km diameter crater, recently named Louth, in the north polar region of Mars (at 70°N, 103.2°E). High-resolution imagery from the instruments on the Mars Reconnaissance Orbiter spacecraft were used to map a 15km diameter water ice deposit in the center of the crater. The water ice mound has surface features that include roughened ice textures and layering similar to that found in the North Polar Layered Deposits. We describe the data analysis process including detection and mapping of hydroxyl mineral signatures using the MR PRISM software suite.MR PRISM is currently in the prototyping stage. Future additions planned include a Bayesian analysis engine, the capacity to handle atmospheric correction routines provided by the CRISM team, the ability to display MOC, THEMIS and HiRISE data and eventually the ability to run on a distributed network to speed up processing of large image cubes. When the software is released to the general community, we hope its embedded scripting language, 'Groovy', will make it the 'front end' for many more sophisticated algorithms from all branches of Mars research.
机译:去年在这次会议上,我们描述了一种计算机应用程序(Brown和Storrie-Lombardi,2006年),即火星侦察PRISM或MR PRISM,旨在分析由火星紧凑成像光谱仪(CRISM)收集的高光谱数据。该应用程序通过向用户展示三种不同的数据分析方式,将CRISM数据集的光谱,成像和映射透视图链接在一起。去年此时,CRISM仍处于校准模式,我们提供了来自ESA的OMEGA仪器的数据来演示MR CRISM的功能。开发此应用程序的主要目标是使可用于检测光谱感兴趣目标的最新算法可用于行星科学界无需个人研究者花钱,而且学习障碍很小。这将使社区能够寻找火星表面的目标,例如冰,热液矿物,硫酸盐矿物和含水矿物,并绘制这些矿床的范围。 CRISM团队现已为我们的社区提供了重要的数据集。我们使用了一个这样的数据集对裸露的水冰丘进行了研究。我们在这里回顾我们在火星北极地区(北纬70°,东经103.2°)发现的直径约36公里的火山口(最近称为劳斯)的观测结果。来自火星侦察轨道飞行器的仪器的高分辨率图像被用来绘制火山口中心直径为15公里的水冰沉积物。水冰丘的表面特征包括与北极分层沉积物中相似的粗糙冰质和分层。我们描述了数据分析过程,包括使用MR PRISM软件套件进行的羟基矿物特征的检测和映射.MR PRISM目前处于原型设计阶段。计划未来增加的功能包括:贝叶斯分析引擎,处理CRISM团队提供的大气校正例程的能力,显示MOC,THEMIS和HiRISE数据的能力,以及最终在分布式网络上运行以加速处理大图像立方体的能力。 。当该软件向公众发布时,我们希望其嵌入式脚本语言“ Groovy”将使其成为火星研究各个分支中许多更复杂算法的“前端”。

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