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A survey of calibration algorithms for small satellite magnetometers

机译:小型卫星磁力计的校准算法概述

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Magnetometers are an integral part of attitude determination system for the low-Earth orbiting small satellites as they are lightweight, inexpensive and reliable. Yet using magnetometers for attitude determination is not straightforward because of the sensor errors. These errors limit the overall achievable attitude determination accuracy. Thus far different methods to cope with magnetometer errors and calibrate the magnetometers have been proposed. A new research field is the specific errors for magnetometers onboard the small satellites and their time-variation characteristics. In accordance, algorithms which consider also the time-varying error terms are proposed. This paper reviews the recent calibration algorithms for small satellite magnetometers. The survey mainly covers batch and recursive estimation algorithms which are capable of estimating the time-varying magnetometer error terms. It presents the foundation of each algorithm and covers issues about the algorithm design, application and performance. In the end possible directions in this research field are briefly discussed.
机译:磁力计重量轻,价格便宜且可靠,是用于低地球轨道小型卫星姿态确定系统的组成部分。然而,由于传感器误差,使用磁力计进行姿态确定并不容易。这些误差限制了整体可实现的姿态确定精度。因此,已经提出了许多不同的方法来应对磁力计误差并校准磁力计。一个新的研究领域是小型卫星上的磁力计的具体误差及其时变特性。相应地,提出了还考虑时变误差项的算法。本文回顾了小型卫星磁力计的最新校准算法。该调查主要涵盖能够估计随时间变化的磁力计误差项的批处理和递归估计算法。它介绍了每种算法的基础,并涵盖了有关算法设计,应用和性能的问题。最后简要讨论了该研究领域的可能方向。

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