An empirical solar radiation pressure model for autonomous GNSS orbit prediction

Juha Ala-Luhtala, Mari Seppanen, R. Piché
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引用次数: 16

Abstract

GNSS satellite orbits can be predicted by integrating the satellites' equation of motion. If the prediction is done in a consumer grade positioning device, a simplified version of the equation of motion is required. The forces due to Earth's gravitation, solar gravitation and lunar gravitation should be included, but the models for the smaller non-gravitational forces can be fairly simple. This paper presents a simple empirical two parameter solar radiation pressure model for an orbit prediction application in a navigation device that does not have a network connection. The model is tested by predicting the orbits of GPS and GLONASS satellites up to 5 days into the future, using position and improved velocity from broadcast ephemerides as an initial state. The predicted orbits are compared to the precise orbits from International GNSS Service (IGS).
自主GNSS轨道预测的经验太阳辐射压力模型
通过对卫星运动方程进行积分,可以预测GNSS卫星的轨道。如果在消费级定位设备中进行预测,则需要简化版的运动方程。地球引力、太阳引力和月球引力应该包括在内,但较小的非引力的模型可以相当简单。本文提出了一种简单的经验双参数太阳辐射压力模型,用于无网络连接导航设备的轨道预测。该模型通过预测GPS和GLONASS卫星未来5天的轨道来进行测试,使用广播星历表中的位置和改进速度作为初始状态。将预测轨道与国际GNSS服务(IGS)的精确轨道进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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