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TomograPy: A Fast, Instrument-Independent, Solar Tomography Software

机译:TomograPhy:快速,独立于仪器的太阳断层扫描软件

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Solar tomography has progressed rapidly in recent years thanks to the development of robust algorithms and the availability of more powerful computers. It can today provide crucial insights in solving issues related to the line-of-sight integration present in the data of solar imagers and coronagraphs. However, there remain challenges such as the increase of the available volume of data, the handling of the temporal evolution of the observed structures, and the heterogeneity of the data in multi-spacecraft studies. We present a generic software package that can perform fast tomographic inversions that scales linearly with the number of measurements, linearly with the length of the reconstruction cube (and not the number of voxels), and linearly with the number of cores and can use data from different sources and with a variety of physical models: TomograPy (http:/barbey.github.com/TomograPy/), an open-source software freely available on the Python Package Index. For performance, TomograPy uses a parallelized-projection algorithm. It relies on the World Coordinate System standard to manage various data sources. A variety of inversion algorithms are provided to perform the tomographic-map estimation. A test suite is provided along with the code to ensure software quality. Since it makes use of the Siddon algorithm it is restricted to rectangular parallelepiped voxels but the spherical geometry of the corona can be handled through proper use of priors. We describe the main features of the code and show three practical examples of multi-spacecraft tomographic inversions using STEREO/EUVI and STEREO/COR1 data. Static and smoothly varying temporal evolution models are presented.
机译:近年来,由于鲁棒算法的发展以及功能更强大的计算机的可用性,太阳层析成像技术得到了飞速发展。今天,它可以为解决与太阳成像仪和日冕仪数据中存在的视线整合相关的问题提供重要的见解。然而,在多宇宙飞船研究中,仍然存在诸如增加可用数据量,处理观察到的结构的时间演变以及数据异质性等挑战。我们提供了一个通用软件包,可以执行快速层析成像反演,该反演可以与测量数量成线性比例,与重建立方体的长度(而不是体素数量)成线性比例,与核数成线性比例,并且可以使用来自不同的来源和各种物理模型:TomograPy(http:/barbey.github.com/TomograPy/),这是一个在Python Package Index上免费提供的开源软件。为了提高性能,TomograPy使用并行投影算法。它依靠世界坐标系标准来管理各种数据源。提供了多种反演算法来执行断层扫描图估计。提供了一个测试套件以及代码以确保软件质量。由于它利用了Siddon算法,因此仅限于长方体体素,但是可以通过适当使用先验来处理电晕的球形几何形状。我们描述了代码的主要特征,并显示了使用STEREO / EUVI和STEREO / COR1数据进行的多航天器层析成像反演的三个实际示例。提出了静态和平稳变化的时间演化模型。

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