火星矿物特征的建模与模拟

W. Elmahboub, Edward Yankey, Olivia Kerwin
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摘要

这项研究的目的是评估利用遥感数据查明火星上矿物的可行性。在此过程中,我们还研究了气溶胶和尘埃颗粒噪声对火星矿物光谱的影响。通过建模和模拟获得遥感数据,并与特定矿物的实验室光谱进行比较,以便进行准确的识别。利用MATLAB随机数生成器建立线性模型,得到仿真图像。线性模型需要的部分信息是火星的纯像素信息,这些信息来自火星勇气号图像。为了模拟真实世界的图像,在图像中加入了随机噪声。除了随机噪声外,还建立了一个数学模型来表示火星大气中气溶胶和尘埃颗粒引起的噪声。对仿真进行了测试,以确保其满足适当的模型测试。我们的结果表明,我们的线性模型是合适的,并且在约95%的置信区间内被接受。然后通过迭代对模拟图像进行噪声校正。校正后的图像的总体准确率提高了25%。获得了两幅图像的光谱特征,并与特定矿物的实验室光谱进行了比较。噪声的降低表明火星数据的光谱分析有所改善。光谱分析表明,该矿物中存在氧化铁、氧化钙和氧化镁,因此图像模拟在矿物光谱识别中是可靠的。
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Modeling and Simulation on Signatures of Mars Minerals
The objective of this study was to assess the feasibility of identiying minerals on Mars using remotely sensed data. In the process we also investigated the effect of noise of aerosol and dust particles on the spectra of Mars minerals. The remotely sensed data was obtained through modeling and simulation and compared to the lab spectroscopy of the specific minerals in order to make an accurate identification. A linear model was developed using MATLAB Random Number Generator to obtain a simulated image. Part of the information we needed for the linear model was pure pixel information of Mars which was obtained from Mars Spirit images. Random noise was added to the image in order to simulate a real world image. In addition to the random noise, a mathematical model was developed to represent the noise caused by aerosols and dust particles in Mars’s atmosphere. The simulation was tested to ensure that it satisfied the appropriate model testing. Our results showed that our linear model was appropriate, and was accepted at a confidence interval of about 95%. The simulated image was then corrected from noise through iterations. The overall accuracy of the corrected image showed an improvement in classification by 25%. The signatures of the spectra of the two images were obtained and compared to the lab spectroscopy of specific minerals. The degradation of noise showed improvement in the spectral analysis of Mars data. The spectral analysis showed the presence of iron oxide, calcium oxide and magnesium oxide leading to the conclusion that the image simulation is reliable in mineral spectral identification.
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