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Fault-tolerant state estimation methods of cluster satellites
T. Yunus Erkec
*
,
Chingiz Hajiyev
*
Corresponding author for this work
Department of Aeronautical Engineering
Turkish National Defence University
Research output
:
Contribution to journal
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Article
›
peer-review
6
Citations (Scopus)
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Keyphrases
Fault-tolerant
100%
State Estimation Method
100%
Cluster Satellites
100%
Tracker
75%
State Estimation
50%
Global Positioning System
50%
Satellite Localization
50%
Reconfigurable
25%
Extended Kalman Filter
25%
State Estimation Techniques
25%
Measurement Error
25%
Dynamic Model
25%
Covariance Matrix
25%
Global Navigation Satellite System
25%
Adaptive Algorithm
25%
Reconfiguration
25%
Target Tracker
25%
Relative State Estimation
25%
Distance Model
25%
Satellite Motion
25%
Satellite Dynamics
25%
State Estimation Error
25%
Satellite Positioning
25%
Orbit Elements
25%
Fault-tolerant Kalman Filter
25%
State Measurement Error
25%
Orbit Perturbations
25%
Positioning Stage
25%
Formation Satellites
25%
Systems-based
25%
System Measurement
25%
Actual Distance
25%
Earth and Planetary Sciences
Estimation Method
100%
Satellite Constellation
100%
State Estimation
100%
Kalman Filter
33%
Covariance
16%
GNSS
16%
Satellite Formation
16%
Lunar Orbit
16%
Dynamic Models
16%
Engineering
State Estimation
100%
Measurement Error
33%
Extended Kalman Filter
16%
Kalman Filter
16%
Dynamic Models
16%
Covariance Matrix
16%
Reconfiguration
16%
State Measurement
16%
Actual Distance
16%
Satellite Dynamics
16%
Detecting Target
16%
Positioning Stage
16%
Estimation Error
16%