2011 4th Annual Caneus Fly by Wireless Workshop : 14-17 June 2011
| 2011 4th Annual Caneus Fly by Wireless Workshop : 14-17 June 2011 |
| Pubbl/distr/stampa | New York : , : IEEE, , 2011 |
| Descrizione fisica | 1 online resource (325 pages) |
| Soggetto topico |
Wireless communication systems
Airplanes - Control systems |
| ISBN | 1-4577-0972-4 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Record Nr. | UNISA-996208774803316 |
| New York : , : IEEE, , 2011 | ||
| Lo trovi qui: Univ. di Salerno | ||
| ||
2011 4th Annual Caneus Fly by Wireless Workshop : 14-17 June 2011
| 2011 4th Annual Caneus Fly by Wireless Workshop : 14-17 June 2011 |
| Pubbl/distr/stampa | New York : , : IEEE, , 2011 |
| Descrizione fisica | 1 online resource (325 pages) |
| Soggetto topico |
Wireless communication systems
Airplanes - Control systems |
| ISBN | 1-4577-0972-4 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Record Nr. | UNINA-9910141144503321 |
| New York : , : IEEE, , 2011 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Adaptive aeroservoelastic control / / Ashish Tewari
| Adaptive aeroservoelastic control / / Ashish Tewari |
| Autore | Tewari Ashish |
| Pubbl/distr/stampa | Chichester, England : , : Wiley, , 2016 |
| Descrizione fisica | 1 online resource (482 p.) |
| Disciplina | 629.132/6 |
| Collana | Aerospace Series |
| Soggetto topico |
Airplanes - Control systems
Aeroservoelasticity Adaptive control systems |
| ISBN |
1-118-92773-7
1-118-92772-9 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Aerospace Series List; Title Page; Copyright; Dedication; Table of Contents; About the Author; Series Editor's Preface; Preface; Chapter 1: Introduction; 1.1 Aeroservoelasticity; 1.2 Unsteady Aerodynamics; 1.3 Linear Feedback Design; 1.4 Parametric Uncertainty and Variation; 1.5 Adaptive Control Design; 1.6 Organization; References; Chapter 2: Linear Control Systems; 2.1 Notation; 2.2 Basic Control Concepts; 2.3 Input-Output Representation; 2.4 Input-Output Linear Systems; 2.5 Loop Shaping of Linear Control Systems; 2.6 State-Space Representation; 2.7 Stochastic Systems; 2.8 Optimal Control
4.3 Active Suppression of Single Degree-of-Freedom Flutter4.4 Active Flutter Suppression of Typical Section; 4.5 Linear Feedback Stabilization; 4.6 Active Flutter Suppression of Three-Dimensional Wings; References; Chapter 5: Self-Tuning Regulation; 5.1 Introduction; 5.2 Online Plant Identification; 5.3 Design Methods for Stochastic Self-Tuning Regulators; 5.4 Aeroservoelastic Applications; References; Chapter 6: Nonlinear Systems Analysis and Design; 6.1 Introduction; 6.2 Preliminaries; 6.3 Stability in the Sense of Lyapunov; 6.4 Input-Output Stability; 6.5 Passivity; References Chapter 7: Nonlinear Oscillatory Systems and Describing Functions7.1 Introduction; 7.2 Absolute Stability; 7.3 Describing Function Approximation; 7.4 Applications to Aeroservoelastic Systems; References; Chapter 8: Model Reference Adaptation of Aeroservoelastic Systems; 8.1 Lyapunov-Like Stability of Non-autonomous Systems; 8.2 Gradient-Based Adaptation; 8.3 Lyapunov-Based Adaptation; 8.4 Aeroservoelastic Applications; References; Chapter 9: Adaptive Backstepping Control; 9.1 Introduction; 9.2 Integrator Backstepping; 9.3 Aeroservoelastic Application; Reference Chapter 10: Adaptive Control of Uncertain Nonlinear Systems10.1 Introduction; 10.2 Integral Adaptation; 10.3 Model Reference Adaptation of Nonlinear Plant; 10.4 Robust Model Reference Adaptation; References; Chapter 11: Adaptive Transonic Aeroservoelasticity; 11.1 Steady Transonic Flow Characteristics; 11.2 Unsteady Transonic Flow Characteristics; 11.3 Modelling for Transonic Unsteady Aerodynamics; 11.4 Transonic Aeroelastic Plant; 11.5 Adaptive Control of Control-Surface Nonlinearity; 11.6 Adaptive Control of Limit-Cycle Oscillation; References Appendix A: Analytical Solution for Ideal Unsteady Aerodynamics |
| Record Nr. | UNINA-9910137402703321 |
Tewari Ashish
|
||
| Chichester, England : , : Wiley, , 2016 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Adaptive aeroservoelastic control / / Ashish Tewari
| Adaptive aeroservoelastic control / / Ashish Tewari |
| Autore | Tewari Ashish |
| Pubbl/distr/stampa | Chichester, England : , : Wiley, , 2016 |
| Descrizione fisica | 1 online resource (482 p.) |
| Disciplina | 629.132/6 |
| Collana | Aerospace Series |
| Soggetto topico |
Airplanes - Control systems
Aeroservoelasticity Adaptive control systems |
| ISBN |
1-118-92773-7
1-118-92772-9 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Aerospace Series List; Title Page; Copyright; Dedication; Table of Contents; About the Author; Series Editor's Preface; Preface; Chapter 1: Introduction; 1.1 Aeroservoelasticity; 1.2 Unsteady Aerodynamics; 1.3 Linear Feedback Design; 1.4 Parametric Uncertainty and Variation; 1.5 Adaptive Control Design; 1.6 Organization; References; Chapter 2: Linear Control Systems; 2.1 Notation; 2.2 Basic Control Concepts; 2.3 Input-Output Representation; 2.4 Input-Output Linear Systems; 2.5 Loop Shaping of Linear Control Systems; 2.6 State-Space Representation; 2.7 Stochastic Systems; 2.8 Optimal Control
4.3 Active Suppression of Single Degree-of-Freedom Flutter4.4 Active Flutter Suppression of Typical Section; 4.5 Linear Feedback Stabilization; 4.6 Active Flutter Suppression of Three-Dimensional Wings; References; Chapter 5: Self-Tuning Regulation; 5.1 Introduction; 5.2 Online Plant Identification; 5.3 Design Methods for Stochastic Self-Tuning Regulators; 5.4 Aeroservoelastic Applications; References; Chapter 6: Nonlinear Systems Analysis and Design; 6.1 Introduction; 6.2 Preliminaries; 6.3 Stability in the Sense of Lyapunov; 6.4 Input-Output Stability; 6.5 Passivity; References Chapter 7: Nonlinear Oscillatory Systems and Describing Functions7.1 Introduction; 7.2 Absolute Stability; 7.3 Describing Function Approximation; 7.4 Applications to Aeroservoelastic Systems; References; Chapter 8: Model Reference Adaptation of Aeroservoelastic Systems; 8.1 Lyapunov-Like Stability of Non-autonomous Systems; 8.2 Gradient-Based Adaptation; 8.3 Lyapunov-Based Adaptation; 8.4 Aeroservoelastic Applications; References; Chapter 9: Adaptive Backstepping Control; 9.1 Introduction; 9.2 Integrator Backstepping; 9.3 Aeroservoelastic Application; Reference Chapter 10: Adaptive Control of Uncertain Nonlinear Systems10.1 Introduction; 10.2 Integral Adaptation; 10.3 Model Reference Adaptation of Nonlinear Plant; 10.4 Robust Model Reference Adaptation; References; Chapter 11: Adaptive Transonic Aeroservoelasticity; 11.1 Steady Transonic Flow Characteristics; 11.2 Unsteady Transonic Flow Characteristics; 11.3 Modelling for Transonic Unsteady Aerodynamics; 11.4 Transonic Aeroelastic Plant; 11.5 Adaptive Control of Control-Surface Nonlinearity; 11.6 Adaptive Control of Limit-Cycle Oscillation; References Appendix A: Analytical Solution for Ideal Unsteady Aerodynamics |
| Record Nr. | UNINA-9910815180303321 |
Tewari Ashish
|
||
| Chichester, England : , : Wiley, , 2016 | ||
| Lo trovi qui: Univ. Federico II | ||
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Advanced control of aircraft, rockets, and spacecraft [[electronic resource] /] / Ashish Tewari
| Advanced control of aircraft, rockets, and spacecraft [[electronic resource] /] / Ashish Tewari |
| Autore | Tewari Ashish |
| Pubbl/distr/stampa | Hoboken, N.J., : Wiley, 2011 |
| Descrizione fisica | 1 online resource (456 p.) |
| Disciplina |
500
629.11 |
| Collana | Aerospace Series |
| Soggetto topico |
Flight control
Airplanes - Control systems Space vehicles - Control systems Rockets (Aeronautics) - Control systems |
| ISBN |
1-119-97274-4
1-283-17775-7 9786613177759 1-119-97119-5 1-119-97120-9 |
| Classificazione | TEC002000 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Advanced Control of Aircraft, Spacecraft and Rockets; Contents; Series Preface; Preface; 1 Introduction; 1.1 Notation and Basic Definitions; 1.2 Control Systems; 1.2.1 Linear Tracking Systems; 1.2.2 Linear Time-Invariant Tracking Systems; 1.3 Guidance and Control of Flight Vehicles; 1.4 Special Tracking Laws; 1.4.1 Proportional Navigation Guidance; 1.4.2 Cross-Product Steering; 1.4.3 Proportional-Integral-Derivative Control; 1.5 Digital Tracking System; 1.6 Summary; Exercises; References; 2 Optimal Control Techniques; 2.1 Introduction; 2.2 Multi-variable Optimization
2.3 Constrained Minimization2.3.1 Equality Constraints; 2.3.2 Inequality Constraints; 2.4 Optimal Control of Dynamic Systems; 2.4.1 Optimality Conditions; 2.5 The Hamiltonian and the Minimum Principle; 2.5.1 Hamilton-Jacobi-Bellman Equation; 2.5.2 Linear Time-Varying System with Quadratic Performance Index; 2.6 Optimal Control with End-Point State Equality Constraints; 2.6.1 Euler-Lagrange Equations; 2.6.2 Special Cases; 2.7 Numerical Solution of Two-Point Boundary Value Problems; 2.7.1 Shooting Method; 2.7.2 Collocation Method; 2.8 Optimal Terminal Control with Interior Time Constraints 2.8.1 Optimal Singular Control2.9 Tracking Control; 2.9.1 Neighboring Extremal Method and Linear Quadratic Control; 2.10 Stochastic Processes; 2.10.1 Stationary Random Processes; 2.10.2 Filtering of Random Noise; 2.11 Kalman Filter; 2.12 Robust Linear Time-Invariant Control; 2.12.1 LQG/LTR Method; 2.12.2 H2/H8 Design Methods; 2.13 Summary; Exercises; References; 3 Optimal Navigation and Control of Aircraft; 3.1 Aircraft Navigation Plant; 3.1.1 Wind Speed and Direction; 3.1.2 Navigational Subsystems; 3.2 Optimal Aircraft Navigation; 3.2.1 Optimal Navigation Formulation 3.2.2 Extremal Solution of the Boundary-Value Problem: Long-Range Flight Example3.2.3 Great Circle Navigation; 3.3 Aircraft Attitude Dynamics; 3.3.1 Translational and Rotational Kinetics; 3.3.2 Attitude Relative to the Velocity Vector; 3.4 Aerodynamic Forces and Moments; 3.5 Longitudinal Dynamics; 3.5.1 Longitudinal Dynamics Plant; 3.6 Optimal Multi-variable Longitudinal Control; 3.7 Multi-input Optimal Longitudinal Control; 3.8 Optimal Airspeed Control; 3.8.1 LQG/LTR Design Example; 3.8.2 H8 Design Example; 3.8.3 Altitude and Mach Control; 3.9 Lateral-Directional Control Systems 3.9.1 Lateral-Directional Plant3.9.2 Optimal Roll Control; 3.9.3 Multi-variable Lateral-Directional Control: Heading-Hold Autopilot; 3.10 Optimal Control of Inertia-Coupled Aircraft Rotation; 3.11 Summary; Exercises; References; 4 Optimal Guidance of Rockets; 4.1 Introduction; 4.2 Optimal Terminal Guidance of Interceptors; 4.3 Non-planar Optimal Tracking System for Interceptors: 3DPN; 4.4 Flight in a Vertical Plane; 4.5 Optimal Terminal Guidance; 4.6 Vertical Launch of a Rocket (Goddard's Problem); 4.7 Gravity-Turn Trajectory of Launch Vehicles 4.7.1 Launch to Circular Orbit: Modulated Acceleration |
| Record Nr. | UNINA-9910139618703321 |
Tewari Ashish
|
||
| Hoboken, N.J., : Wiley, 2011 | ||
| Lo trovi qui: Univ. Federico II | ||
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Advanced control of aircraft, rockets, and spacecraft / / Ashish Tewari
| Advanced control of aircraft, rockets, and spacecraft / / Ashish Tewari |
| Autore | Tewari Ashish |
| Edizione | [1st ed.] |
| Pubbl/distr/stampa | Hoboken, N.J., : Wiley, 2011 |
| Descrizione fisica | 1 online resource (456 p.) |
| Disciplina |
500
629.11 |
| Collana | Aerospace Series |
| Soggetto topico |
Flight control
Airplanes - Control systems Space vehicles - Control systems Rockets (Aeronautics) - Control systems |
| ISBN |
1-119-97274-4
1-283-17775-7 9786613177759 1-119-97119-5 1-119-97120-9 |
| Classificazione | TEC002000 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Advanced Control of Aircraft, Spacecraft and Rockets; Contents; Series Preface; Preface; 1 Introduction; 1.1 Notation and Basic Definitions; 1.2 Control Systems; 1.2.1 Linear Tracking Systems; 1.2.2 Linear Time-Invariant Tracking Systems; 1.3 Guidance and Control of Flight Vehicles; 1.4 Special Tracking Laws; 1.4.1 Proportional Navigation Guidance; 1.4.2 Cross-Product Steering; 1.4.3 Proportional-Integral-Derivative Control; 1.5 Digital Tracking System; 1.6 Summary; Exercises; References; 2 Optimal Control Techniques; 2.1 Introduction; 2.2 Multi-variable Optimization
2.3 Constrained Minimization2.3.1 Equality Constraints; 2.3.2 Inequality Constraints; 2.4 Optimal Control of Dynamic Systems; 2.4.1 Optimality Conditions; 2.5 The Hamiltonian and the Minimum Principle; 2.5.1 Hamilton-Jacobi-Bellman Equation; 2.5.2 Linear Time-Varying System with Quadratic Performance Index; 2.6 Optimal Control with End-Point State Equality Constraints; 2.6.1 Euler-Lagrange Equations; 2.6.2 Special Cases; 2.7 Numerical Solution of Two-Point Boundary Value Problems; 2.7.1 Shooting Method; 2.7.2 Collocation Method; 2.8 Optimal Terminal Control with Interior Time Constraints 2.8.1 Optimal Singular Control2.9 Tracking Control; 2.9.1 Neighboring Extremal Method and Linear Quadratic Control; 2.10 Stochastic Processes; 2.10.1 Stationary Random Processes; 2.10.2 Filtering of Random Noise; 2.11 Kalman Filter; 2.12 Robust Linear Time-Invariant Control; 2.12.1 LQG/LTR Method; 2.12.2 H2/H8 Design Methods; 2.13 Summary; Exercises; References; 3 Optimal Navigation and Control of Aircraft; 3.1 Aircraft Navigation Plant; 3.1.1 Wind Speed and Direction; 3.1.2 Navigational Subsystems; 3.2 Optimal Aircraft Navigation; 3.2.1 Optimal Navigation Formulation 3.2.2 Extremal Solution of the Boundary-Value Problem: Long-Range Flight Example3.2.3 Great Circle Navigation; 3.3 Aircraft Attitude Dynamics; 3.3.1 Translational and Rotational Kinetics; 3.3.2 Attitude Relative to the Velocity Vector; 3.4 Aerodynamic Forces and Moments; 3.5 Longitudinal Dynamics; 3.5.1 Longitudinal Dynamics Plant; 3.6 Optimal Multi-variable Longitudinal Control; 3.7 Multi-input Optimal Longitudinal Control; 3.8 Optimal Airspeed Control; 3.8.1 LQG/LTR Design Example; 3.8.2 H8 Design Example; 3.8.3 Altitude and Mach Control; 3.9 Lateral-Directional Control Systems 3.9.1 Lateral-Directional Plant3.9.2 Optimal Roll Control; 3.9.3 Multi-variable Lateral-Directional Control: Heading-Hold Autopilot; 3.10 Optimal Control of Inertia-Coupled Aircraft Rotation; 3.11 Summary; Exercises; References; 4 Optimal Guidance of Rockets; 4.1 Introduction; 4.2 Optimal Terminal Guidance of Interceptors; 4.3 Non-planar Optimal Tracking System for Interceptors: 3DPN; 4.4 Flight in a Vertical Plane; 4.5 Optimal Terminal Guidance; 4.6 Vertical Launch of a Rocket (Goddard's Problem); 4.7 Gravity-Turn Trajectory of Launch Vehicles 4.7.1 Launch to Circular Orbit: Modulated Acceleration |
| Record Nr. | UNINA-9910818323903321 |
Tewari Ashish
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||
| Hoboken, N.J., : Wiley, 2011 | ||
| Lo trovi qui: Univ. Federico II | ||
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Advances in aerospace guidance, navigation and control : selected papers of the second CEAS Specialist Conference on Guidance, Navigation and Control / / Qiping Chu ... [et. al.], editors
| Advances in aerospace guidance, navigation and control : selected papers of the second CEAS Specialist Conference on Guidance, Navigation and Control / / Qiping Chu ... [et. al.], editors |
| Edizione | [1st ed. 2013.] |
| Pubbl/distr/stampa | Berlin ; ; Heidelberg, : Springer-Verlag, 2013 |
| Descrizione fisica | 1 online resource (773 p.) |
| Disciplina | 629.453 |
| Altri autori (Persone) | ChuQiping |
| Soggetto topico |
Flight control
Airplanes - Control systems Engineering mathematics Engineering |
| ISBN | 3-642-38253-3 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Guidance and Control. Linear Parameter Varying Control of an Agile Missile Model Based on the Induced L 2-norm Framework / Raziye Tekin, Harald Pfifer -- Improving the Performance of an Actuator Control Scheme during Saturation / Chang How Lo, Hyo-Sang Shin, Antonios Tsourdos, Seung-Hwan Kim -- Concurrent Learning Adaptive Model Predictive Control / Girish Chowdhary [and others] -- Model Reference Adaptive Control of Mildly Non-Linear Systems with Time Varying Input Delays - Part I / James P. Nelson, Mark J. Balas, Richard S. Erwin -- Model Reference Adaptive Control of Mildly Non-Linear Systems with Time Varying Input Delays - Part II / James P. Nelson, Mark J. Balas, Richard S. Erwin -- Flight Control Algorithms for a Vertical Launch Air Defense Missile / Raziye Tekin, Ozgur Atesoglu, Kemal Leblebicioglu -- LFT Model Generation via ℓ1-Regularized Least Squares / Harald Pfifer, Simon Hecker -- An Impulsive Input Approach to Short Time Convergent Control for Linear Systems / Martin Weiss, Yuri Shtessel -- Model Formulation of Pursuit Problem with Two Pursuers and One Evader / Sergey S. Kumkov, Stéphane Le Ménec, Valerii S. Patsko -- Nonlinear Output-Feedback H [infinity symbol] Control for Spacecraft Attitude Control / Alon Capua [and others].
Estimation and Navigation. Rotorcraft System Identification: An Integrated Time-Frequency Domain Approach / Marco Bergamasco, Marco Lovera -- Air Data Sensor Fault Detection Using Kinematic Relations / Laurens van Eykeren, Qiping Chu -- A Multiple-Observer Scheme for Fault Detection, Isolation and Recovery of Satellite Thrusters / Antoine Abauzit, Julien Marzat -- A Spherical Coordinate Parametrization for an In-Orbit Bearings-Only Navigation Filter / Jonathan Grzymisch [and others] -- A New Substitution Based Recursive B-Splines Method for Aerodynamic Model Identification / Liguo Sun, Coen de Visser, Qiping Chu -- Spacecraft Fault Detection and Isolation System Design Using Decentralized Analytical Redundancy / Saurabh Indra, Louise Travé-Massuyès -- Flight Test Oriented Autopilot Design for Improved Aerodynamic Parameter Identification / Matthias Krings, Karsten Henning, Frank Thielecke -- A Flight State Estimator that Combines Stereo-Vision, INS, and Satellite Pseudo-Ranges / Franz Andert [and others] -- L1 Adaptive Control for Systems with Matched Stochastic Disturbance / Toufik Souanef, Federico Pinchetti, Walter Fichter. Atmospheric Applications. Decoupling the Eye: A Key toward a Robust Hovering for Sighted Aerial Robots / Augustin Manecy [and others] -- Flight Guidance and Control of a Tethered Glider in an Airborne Wind Energy Application / Sören Sieberling -- Lateral Fly by Wire Control System Dedicated to Future Small Aircraft / Matthias Heller, Thaddäus Baier, Falko Schuck -- Dynamic Trajectory Control of Gliders / Rui Dilão, João Fonseca -- Cooperative Autonomous Collision Avoidance System for Unmanned Aerial Vehicle / Yazdi Ibrahim Jenie, Erik-Jan van Kampen, Bart Remes -- Nonlinear Non-cascaded Reference Model Architecture for Flight Control Design / Fubiao Zhang, Florian Holzapfel, Matthias Heller -- Aircraft Longitudinal Guidance Based on a Spatial Reference / Hakim Bouadi, Daniel Choukroun, Felix Mora-Camino -- Adaptive Trajectory Controller for Generic Fixed-Wing Unmanned Aircraft / Maximilian Mühlegg [and others] -- Stereo Vision Based Obstacle Avoidance on Flapping Wing MAVs / Sjoerd Tijmons [and others] -- The Total Energy Control Concept for a Motor Glider / Maxim Lamp, Robert Luckner -- TECS Generalized Airplane Control System Design-An Update / Antonius A. Lambregts -- Integrated Modelling of an Unmanned High-Altitude Solar-Powered Aircraft for Control Law Design Analysis / Andreas Klöckner [and others] -- Design and Flight Testing of Nonlinear Autoflight Control Laws Incorporating Direct Lift Control / Thomas Lombaerts, Gertjan Looye -- A Frequency-Limited H2 Model Approximation Method with Application to a Medium-Scale Flexible Aircraft / Pierre Vuillemin, Charles Poussot-Vassal, Daniel Alazard -- Hardware-in-the-Loop Flight Simulator-An Essential Part in the Development Process for the Automatic Flight Control System of a Utility Aircraft / André Kaden, Bernd Boche, Robert Luckner -- Autonomous Wind Tunnel Free-Flight of a Flapping Wing MAV / Christophe De Wagter [and others] -- Application of Frequency-Limited Adaptive Quadrocopter Control / Kirk Y.W. Scheper [and others] -- Aeroservoelastic Investigations of a High-Aspect-Ratio Motor Glider / Flávio J. Silvestre. Space Applications. Relative Optical Navigation for a Lunar Lander Mission / Mark J. Verweld -- Toward an Autonomous Lunar Landing Based on Low-Speed Optic Flow Sensors / Guillaume Sabiron [and others] -- Online Estimation of Mean Orbital Elements with Control Inputs / Weichao Zhong, Pini Gurfil -- Flight Nutation Validation of the COS-B and EQUATOR-S Spacecraft / Hans Kuiper, Edward Bongers -- Fault-Tolerant Spacecraft Magnetic Attitude Control / Aviran Sadon, Daniel Choukroun -- GNC Challenges and Navigation Solutions for Active Debris Removal Mission / Erwan Kervendal, Thomas Chabot, Keyvan Kanani. |
| Record Nr. | UNINA-9910438051703321 |
| Berlin ; ; Heidelberg, : Springer-Verlag, 2013 | ||
| Lo trovi qui: Univ. Federico II | ||
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Advances in guidance, navigation and control : proceedings of 2022 international conference on guidance, navigation and control / / Haibin Duan, Liang Yan, Yimin Deng, editors
| Advances in guidance, navigation and control : proceedings of 2022 international conference on guidance, navigation and control / / Haibin Duan, Liang Yan, Yimin Deng, editors |
| Edizione | [1st ed. 2023.] |
| Pubbl/distr/stampa | Singapore : , : Springer, , [2023] |
| Descrizione fisica | 1 online resource (7455 pages) |
| Disciplina | 629.135 |
| Collana | Lecture notes in electrical engineering |
| Soggetto topico |
Airplanes - Control systems
Navigation (Aeronautics) |
| ISBN | 981-19-6613-3 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto | A Survey of Relative Motion Dynamics and Control of Distributed Satellite Formation -- Determination Technology and Accuracy Analysis of Configuration Parameters of Ground System Dual Satellite Formation Based on Navigation Data -- UAV path planning based on improved GWO algorithm -- A Review on tracking control of the underactuated vessel with time delays -- A Multimodal Image Matching Algorithm Based on Structure Feature -- Full-scale Attitude Solution Based on Dual Euler Method -- Q-Learning Based Online Adaptive Flight Control for Fixed-Wing UAV. |
| Record Nr. | UNINA-9910659478603321 |
| Singapore : , : Springer, , [2023] | ||
| Lo trovi qui: Univ. Federico II | ||
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Aircraft control and simulation : dynamics, controls design, and autonomous systems / / Brian L. Stevens, Frank L. Lewis, Eric N. Johnson
| Aircraft control and simulation : dynamics, controls design, and autonomous systems / / Brian L. Stevens, Frank L. Lewis, Eric N. Johnson |
| Autore | Stevens Brian L. |
| Edizione | [3rd ed.] |
| Pubbl/distr/stampa | Hoboken, New Jersey : , : Wiley, , 2016 |
| Descrizione fisica | 1 online resource (845 p.) |
| Disciplina | 629.135 |
| Soggetto topico | Airplanes - Control systems |
| ISBN |
1-5231-0997-1
1-118-87097-2 1-119-17488-0 1-118-87099-9 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto | The kinematics and dynamics of aircraft motion -- Modeling the aircraft -- Modeling, design, and simulation tools -- Aircraft dynamics and classical control design -- Modern design techniques -- Robustness and multivariable frequency-domain techniques -- Digital control -- Modeling and simulation of miniature aerial vehicles -- Adaptive control with application to miniature aerial vehicles. |
| Record Nr. | UNINA-9910131502103321 |
Stevens Brian L.
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| Hoboken, New Jersey : , : Wiley, , 2016 | ||
| Lo trovi qui: Univ. Federico II | ||
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Aircraft control and simulation / Brian L. Stevens, Frank L. Lewis
| Aircraft control and simulation / Brian L. Stevens, Frank L. Lewis |
| Autore | Stevens, Brian L., 1939- |
| Edizione | [2nd ed.] |
| Pubbl/distr/stampa | Hoboken, N.J. : J. Wiley, c2003 |
| Descrizione fisica | xvi, 664 p. : ill. ; 25 cm |
| Disciplina | 629.135 |
| Altri autori (Persone) | Lewis, Frank L. |
| Soggetto topico | Airplanes - Control systems |
| ISBN | 0471371459 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Record Nr. | UNISALENTO-991000251009707536 |
Stevens, Brian L., 1939-
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| Hoboken, N.J. : J. Wiley, c2003 | ||
| Lo trovi qui: Univ. del Salento | ||
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