Evaluation of tightly- and loosely-coupled approaches in CNN-based pose estimation systems for uncooperative spacecraft

被引:34
作者
Cassinis, Lorenzo Pasqualetto [1 ]
Fonod, Robert [2 ]
Gill, Eberhard [3 ]
Ahrns, Ingo [4 ]
Gil-Fernandez, Jesus [5 ]
机构
[1] Delft Univ Technol, Kluyverweg 1, NL-2629 HS Delft, Netherlands
[2] Delft Univ Technol, Dept Space Engn, Kluyverweg 1, NL-2629 HS Delft, Netherlands
[3] Delft Univ Technol, Chair Space Syst Engn, Fac Aerosp Engn, Kluyverweg 1, NL-2629 HS Delft, Netherlands
[4] Airbus DS GmbH, Airbusallee 1, D-28199 Bremen, Germany
[5] ESTEC, Keplerlaan 1, NL-2201 AZ Noordwijk, Netherlands
关键词
Relative pose estimation; Active Debris Removal; In-Orbit Servicing; Monocular-based navigation filters; Convolutional Neural Networks; OBJECTS;
D O I
10.1016/j.actaastro.2021.01.035
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The relative pose estimation of an inactive spacecraft by an active servicer spacecraft is a critical task in the design of current and planned space missions, due to its relevance for close-proximity operations, such as In-Orbit Servicing and Active Debris Removal. This paper introduces a novel framework to enable robust monocular pose estimation for close-proximity operations around an uncooperative spacecraft, which combines a Convolutional Neural Network (CNN) for feature detection with a Covariant Efficient Procrustes Perspective-n-Points (CEPPnP) solver and a Multiplicative Extended Kalman Filter (MEKF). The performance of the proposed method is evaluated at different levels of the pose estimation system. A Single-stack Hourglass CNN is proposed for the feature detection step in order to decrease the computational load of the Image Processing (IP), and its accuracy is compared to the standard, more complex High-Resolution Net (HRNet). Subsequently, heatmaps-derived covariance matrices are included in the CEPPnP solver to assess the pose estimation accuracy prior to the navigation filter. This is done in order to support the performance evaluation of the proposed tightly-coupled approach against a loosely-coupled approach, in which the detected features are converted into pseudomeasurements of the relative pose prior to the filter. The performance results of the proposed system indicate that a tightly-coupled approach can guarantee an advantageous coupling between the rotational and translational states within the filter, whilst reflecting a representative measurements covariance. This suggest a promising scheme to cope with the challenging demand for robust navigation in close-proximity scenarios. Synthetic 2D images of the European Space Agency's Envisat spacecraft are used to generate datasets for training, validation and testing of the CNN. Likewise, the images are used to recreate a representative close-proximity scenario for the validation of the proposed filter.
引用
收藏
页码:189 / 202
页数:14
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