Kalman filtering for spacecraft attitude estimation
Калмановская фильтрация для оценки ориентации космического аппарата
1982-01-11
SCID: 54.1/qwwsk5rm
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Kalman filteringline-of-sight attitude sensorsquaternion attitude representationspacecraft attitude estimationthree-axis gyroscopes
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Abstract (AI)
Several schemes in current use for sequential estimation of spacecraft attitude using Kalman filters are examined. These differ according to their treatment of the attitude error, namely: using the complete four-component quaternion; using a truncated quaternion in which one of the components has been eliminated; or using a quaternion referred to approximate body-fixed axes. These schemes are examined for the case of a spacecraft carrying line-of-sight attitude sensors and three-axis gyros whose measurements are corrupted by noise on both the drift rate and the drift-rate ramp. The analysis of the covariance is carried out in detail. The historical development of Kalman filtering of attitude is reviewed.
Key Findings
1
Covariance behavior is analyzed in detail for the considered attitude-estimation schemes.
2
The analysis addresses spacecraft equipped with line-of-sight attitude sensors and three-axis gyroscopes whose measurements include drift-rate and drift-rate-ramp noise.
3
The compared approaches use the complete four-component quaternion, a truncated quaternion, or a quaternion referenced to approximate body-fixed axes.
4
The paper examines multiple sequential Kalman-filtering schemes for spacecraft attitude estimation based on different representations of attitude error.
5
The paper reviews the historical development of Kalman filtering methods for spacecraft attitude estimation.
Research Object
spacecraft attitude estimation systems using line-of-sight sensors and three-axis gyros
Research Subject
the covariance and performance of sequential Kalman-filtering schemes using complete, truncated, or approximate-axis quaternion attitude-error representations under gyro measurement noise
Publication Details
Publication Date
1982-01-11
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