A method for evaluating attitude and measuring angular rate of uncontrolled bodies in space, such as space debris, has been developed. The measurement can be obtained by elaborating data coming from tracking few natural features of the objects. Tracking can be pursued for instance through a chaser spacecraft equipped with 3D-cameras. Continuous quaternion time series are obtained via compressed sensing (CS) techniques while a linear Kalman filter (KF) is used to estimate the angular rate. The developed method is robust to typical occlusions of cameras in space environment. © 2016 IEEE.

Feature-based estimation of space debris angular rate via compressed sensing and Kalman filtering / Biondi, Gabriele; Mauro, Stefano; Mohtar, Tharek; Pastorelli, STEFANO PAOLO; Sorli, Massimo. - ELETTRONICO. - (2016), pp. 215-220. (Intervento presentato al convegno 3rd IEEE International Workshop on Metrology for Aerospace, MetroAeroSpace 2016 tenutosi a ita nel 2016) [10.1109/MetroAeroSpace.2016.7573215].

Feature-based estimation of space debris angular rate via compressed sensing and Kalman filtering

BIONDI, GABRIELE;MAURO, STEFANO;PASTORELLI, STEFANO PAOLO;SORLI, Massimo
2016

Abstract

A method for evaluating attitude and measuring angular rate of uncontrolled bodies in space, such as space debris, has been developed. The measurement can be obtained by elaborating data coming from tracking few natural features of the objects. Tracking can be pursued for instance through a chaser spacecraft equipped with 3D-cameras. Continuous quaternion time series are obtained via compressed sensing (CS) techniques while a linear Kalman filter (KF) is used to estimate the angular rate. The developed method is robust to typical occlusions of cameras in space environment. © 2016 IEEE.
2016
9781467382922
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2656827
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