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Author Mathavaraj, S., author
Title Satellite formation flying : high precision guidance using optimal and adaptive control techniques / by S. Mathavaraj, Radhakant Padhi
Imprint Singapore : Springer Singapore : Imprint: Springer, 2021
book jacket
Descript 1 online resource (xxi, 154 pages) : illustrations (some color), digital ; 24 cm
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
text file PDF rda
Note Chapter 1: Introduction and Motivation -- Chapter 2: Satellite Orbital Dynamics -- Chapter 3: Infinite-time LQR and SDRE for Satellite Formation Flying -- Chapter4: Adaptive LQR for Satellite Formation Flying -- Chapter 5: Adaptive Dynamic Inversion for Satellite Formation Flying -- Chapter 6: Finite-time LQR and SDRE for Satellite Formation Flying -- Chapter 7: Model Predictive Static Programming -- Chapter 8: Performance Comparison
Small satellite technology is opening up a new era in space exploration offering reduced cost of launch and maintenance, operational flexibility with on-orbit reconfiguration, redundancy etc. The true power of such missions can be harnessed only from close and precise formation flying of satellites. Formation flying missions support diverse application areas such as reconnaissance, remote sensing, solar observatory, deep space observatories, etc. A key component involved in formation flying is the guidance algorithm that should account for system nonlinearities and unknown disturbances. The main focus of this book is to present various nonlinear optimal control and adaptive guidance ideas to ensure precise close formation flying in presence of such difficulties. In addition to in-depth discussion of the relevant topics, MATLAB program files for the results included are also provided for the benefit of the readers. Since this book has concise information about the various guidance techniques, it will be useful reference for researchers and practising engineers in the space field
Host Item Springer Nature eBook
Subject Microspacecraft -- Automatic control
Aerospace engineering
Astronautics
Vibration
Dynamics
Mathematical optimization
Aerospace Technology and Astronautics
Vibration, Dynamical Systems, Control
Optimization
Alt Author Padhi, Radhakant, author
SpringerLink (Online service)
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