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Estimator for Deep-Space Position and Attitude Using X-ray Pulsars
Joel T. Runnels
,
Demoz Gebre-Egziabher
Aerospace Engineering and Mechanics
Research output
:
Contribution to journal
›
Article
›
peer-review
11
Scopus citations
Overview
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Keyphrases
Angle of Arrival
50%
Angle-of-arrival Measurement
50%
Angular Velocity Estimation
50%
Attitude Accuracy
50%
Attitude Determination
50%
Bright Stars
100%
Deep Space
100%
Detector Size
50%
Playback
50%
Position Determination
50%
Positioning Accuracy
50%
Probabilistic Data Association Filter
50%
Pulsar Navigation
50%
Pulsar Star
50%
Pulsars
50%
Pulse Signal
50%
Rate Gyro
50%
Signal-to-noise Ratio
50%
Six Degrees of Freedom
50%
Small Signal
50%
Space Position
100%
Three-axis
50%
Time of Arrival
100%
Unique Identifier
50%
X-ray Detectors
100%
X-ray Photon
100%
X-ray Pulsar
100%
Physics
Deep Space
100%
Degree of Freedom
20%
Detectors
60%
Pulsar
100%
Signal-to-Noise Ratio
20%
Spacecraft
20%
X Ray
100%