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Spacecraft attitude estimation based on magnetometer measurements and the covariance intersection algorithm nanosatellites

机译:基于磁力计测量和协方差相交算法的航天器姿态估计纳卫星

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This paper describes the design of an autonomous attitude determination and estimation system based only on magnetometer measurements. Initial angle determination is performed through averaging of a large pool of measurements which eliminates the large error in the theoretical field model. Attitude estimation is undertaken using a so-called covariance intersection method which guarantees consistent estimates even if the correlation level between the predictions and measurements is not known. Test results show that this averaging approach is capable of providing very accurate initial attitude determination and that the covariance intersection estimator is capable of maintaining this property. Overall, we conclude that the system developed here is feasible for obtaining and maintaining high accuracy attitude estimation using only magnetometer measurements.
机译:本文介绍了仅基于磁力计测量的自主姿态确定和估计系统的设计。初始角度确定是通过对大量测量值进行平均来执行的,从而消除了理论场模型中的较大误差。使用所谓的协方差相交方法进行姿态估计,即使不知道预测和测量之间的相关程度,该方法也可以保证估计的一致性。测试结果表明,这种平均方法能够提供非常准确的初始姿态确定,并且协方差相交估计器能够保持这一特性。总的来说,我们得出的结论是,此处开发的系统仅使用磁力计测量值即可获得并保持高精度的姿态估计。

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