Non-Cooperative Target Tracking, Fusion and Control Algorithms and Advances /
This book gives a concise and comprehensive overview of non-cooperative target tracking, fusion and control. Focusing on algorithms rather than theories for non-cooperative targets including air and space-borne targets, this work explores a number of advanced techniques, including Gaussian mixture c...
Κύριοι συγγραφείς: | , , , |
---|---|
Συγγραφή απο Οργανισμό/Αρχή: | |
Μορφή: | Ηλεκτρονική πηγή Ηλ. βιβλίο |
Γλώσσα: | English |
Έκδοση: |
Cham :
Springer International Publishing : Imprint: Springer,
2018.
|
Έκδοση: | 1st ed. 2018. |
Σειρά: | Information Fusion and Data Science,
|
Θέματα: | |
Διαθέσιμο Online: | Full Text via HEAL-Link |
Πίνακας περιεχομένων:
- Introduction
- Part I Multi-Target Tracking
- Gaussian mixture CPHD filter with gating technique
- Detection-guided multi-target Bayesian filter
- On the sensor order in sequential integrated probability data association filter
- New method for dynamic bias estimation: Gaussian mean shift registration
- Part II Visual Target Tracking
- Learning-based appearance model for probabilistic visual tracking
- Incremental visual tracking with L1 norm approximation and Grassmann update
- A dual-kernel-based tracking approach for visual target
- Kernel joint visual tracking and recognition based on structured sparse representation
- Part III Image Fusion and Deblurring
- A simple method to build oversampled filter banks and tight frames
- Multi-focus image fusion using pulse coupled neural network
- Evaluation of focus measures in multi-focus image fusion
- Multi-modality image fusion via generalized Riesz-wavelet transformation
- A sparse proximal Newton splitting method for constrained image deblurring
- Part IV Control of Spacecraft Maneuvers
- Maneuver-aided active satellite tracking using six-DOF optimal dynamic inversion control
- Dynamic optimal sliding-mode control for six-DOF follow-up robust tracking of active satellite
- Redundant adaptive robust tracking of active satellite and error evaluation.