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首页> 外文期刊>Acta astronautica >Low-Earth Orbit Determination from Gravity Gradient Measurements
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Low-Earth Orbit Determination from Gravity Gradient Measurements

机译:通过重力梯度测量确定低地球轨道

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摘要

An innovative orbit determination method which makes use of gravity gradients for Low-Earth-Orbiting satellites is proposed. The measurement principle of gravity gradiometry is briefly reviewed and the sources of measurement error are analyzed. An adaptive hybrid least squares batch filter based on linearization of the orbital equation and unscented transformation of the measurement equation is developed to estimate the orbital states and the measurement biases. The algorithm is tested with the actual flight data from the European Space Agency's Gravity field and steady-state Ocean Circulation Explorer (GOCE). The orbit determination results are compared with the GPS-derived orbits. The radial and cross-track position errors are on the order of tens of meters, whereas the along-track position error is over one order of magnitude larger. The gravity gradient based orbit determination method is promising for potential use in GPS-denied spacecraft navigation. (C) 2016 IAA. Published by Elsevier Ltd. All rights reserved.
机译:提出了一种利用重力梯度对低地球轨道卫星进行定位的创新方法。简要回顾了重力梯度仪的测量原理,并分析了测量误差的来源。开发了一种基于轨道方程线性化和测量方程无味变换的自适应混合最小二乘批量滤波器,以估计轨道状态和测量偏差。该算法已通过欧洲航天局重力场和稳态海洋环流探测器(GOCE)的实际飞行数据进行了测试。将轨道确定结果与GPS衍生的轨道进行比较。径向和跨轨道位置误差约为几十米,而沿轨道位置误差则大一个数量级。基于重力梯度的轨道确定方法有望在GPS限制的航天器导航中潜在使用。 (C)2016 IAA。由Elsevier Ltd.出版。保留所有权利。

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