Improved alpha shape-based continuum method for long-term density propagation

Pan Sun, Shuang Li, Mirko Trisolini, Camilla Colombo
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Abstract

This paper presents an improved alpha shape-based linear interpolation method, and an improved binning method within the continuum method framework for accurate and efficient planar phase space long-term density propagation. The density evolution equation is formulated for the continuum density propagation under the influence of the solar radiation pressure and Earth’s oblateness using semi-analytical equations. The concept of the alpha shape is included to get accurate interpolated density within the non-convex hull enclosing all the samples for the highly deformed and elongated density distribution. The improved binning method increases the density accuracy by considering the variant nonlinearity of the density within each alpha shape triangulation, which calculates the joint and marginal density as the weighted sum of density weights per bin area and per bin width, respectively. The suitable sample number for the continuum method and the suitable grid number for performing the linear interpolation are selected by trading off the density accuracy and the computational effort. The superiority of the improved alpha shape-based continuum method is demonstrated for accurate and efficient density propagation in the context of the high-altitude and high area-to-mass ratio satellite long-term propagation.

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改进的基于阿尔法形状的连续方法,用于长期密度传播
本文提出了一种改进的基于阿尔法形状的线性插值方法,以及一种改进的连续方法框架内的分选方法,用于精确高效的平面相空间长期密度传播。在太阳辐射压力和地球扁平度的影响下,利用半解析方程为连续密度传播制定了密度演化方程。对于高度变形和拉长的密度分布,加入了阿尔法形状的概念,以在包围所有样本的非凸壳内获得精确的内插密度。改进的分选方法考虑了每个α形三角形内密度的变异非线性,将联合密度和边际密度分别计算为每个分选区和每个分选区宽度的密度权重加权和,从而提高了密度精度。通过权衡密度精度和计算量,为连续法选择合适的样本数,为线性插值选择合适的网格数。在高海拔和高面积质量比卫星长期传播的背景下,证明了改进的基于阿尔法形状的连续方法在精确高效的密度传播方面的优越性。
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