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Extending the hybrid methodology for orbit propagation by fitting techniques

机译:通过拟合技术扩展用于轨道传播的混合方法

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The hybrid methodology for orbit propagation is a technique that allows improving the accuracy of any propagator for predicting the future trajectory of a satellite or space-debris object in orbit around the Earth. It is based on modeling the error of the base propagator to be enhanced. Both statistical time-series forecasting methods and machine-learning techniques can be used for that purpose. The standard procedure for developing a hybrid orbit propagator requires some initial control data, that is, a set of precise ephemerides corresponding to either real observations or accurately computed pseudo-observations, from which to model the base-propagator error dynamics. It also needs tuning the time-series forecaster from those control data. We propose an improvement to the hybrid methodology for orbit propagation, based on fitting new hybrid propagators from others previously developed for nearby initial conditions, which avoids the need for both the control data and the tuning process, and achieves comparable results. (C) 2019 Elsevier B.V. All rights reserved.
机译:用于轨道传播的混合方法是一种可以提高任何传播器的准确性的技术,用于预测地球周围轨道上的卫星或空间碎片物体的未来轨迹。它是基于对基础传播器的误差进行建模以增强的。统计时间序列预测方法和机器学习技术都可以用于此目的。开发混合轨道传播器的标准程序需要一些初始控制数据,即一组对应于实际观测值或精确计算的伪观测值的精确星历表,从中可以对基础传播器的误差动态进行建模。它还需要根据这些控制数据调整时间序列预测器。我们建议对混合传播方法进行改进,方法是从先前为附近的初始条件开发的其他混合传播器中安装新的混合传播器,从而避免了对控制数据和调谐过程的需求,并获得了可比的结果。 (C)2019 Elsevier B.V.保留所有权利。

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