Adaptive Guidance and Control of Small Unmanned Aerial Vehicles

Adaptive Guidance and Control of Small Unmanned Aerial Vehicles
Author: Toufik Souanef
Publsiher: Unknown
Total Pages: 135
Release: 2019
Genre: Electronic Book
ISBN: 3844070427

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Fault tolerant Flight Control and Guidance Systems

Fault tolerant Flight Control and Guidance Systems
Author: Guillaume J. J. Ducard
Publsiher: Springer Science & Business Media
Total Pages: 268
Release: 2009-05-14
Genre: Technology & Engineering
ISBN: 9781848825611

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This book offers a complete overview of fault-tolerant flight control techniques. Discussion covers the necessary equations for the modeling of small UAVs, a complete system based on extended Kalman filters, and a nonlinear flight control and guidance system.

Control of Autonomous Aerial Vehicles

Control of Autonomous Aerial Vehicles
Author: Andrea L'Afflitto,Gokhan Inalhan,Hyo-Sang Shin
Publsiher: Springer Nature
Total Pages: 363
Release: 2023-11-20
Genre: Technology & Engineering
ISBN: 9783031397677

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Control of Autonomous Aerial Vehicles is an edited book that provides a single-volume snapshot on the state of the art in the field of control theory applied to the design of autonomous unmanned aerial vehicles (UAVs), aka “drones”, employed in a variety of applications. The homogeneous structure allows the reader to transition seamlessly through results in guidance, navigation, and control of UAVs, according to the canonical classification of the main components of a UAV’s autopilot. Each chapter has been written to assist graduate students and practitioners in the fields of aerospace engineering and control theory. The contributing authors duly present detailed literature reviews, conveying their arguments in a systematic way with the help of diagrams, plots, and algorithms. They showcase the applicability of their results by means of flight tests and numerical simulations, the results of which are discussed in detail. Control of Autonomous Aerial Vehicles will interest readers who are researchers, practitioners or graduate students in control theory, autonomous systems or robotics, or in aerospace, mechanical or electrical engineering.

Guidance of Unmanned Aerial Vehicles

Guidance of Unmanned Aerial Vehicles
Author: Rafael Yanushevsky
Publsiher: CRC Press
Total Pages: 373
Release: 2011-03-29
Genre: Technology & Engineering
ISBN: 9781439850961

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Written by an expert with more than 30 years of experience, Guidance of Unmanned Aerial Vehicles contains new analytical results, taken from the author's research, which can be used for analysis and design of unmanned aerial vehicles guidance and control systems. This book progresses from a clear elucidation of guidance laws and unmanned aerial veh

Digital Technologies and Applications

Digital Technologies and Applications
Author: Saad Motahhir,Badre Bossoufi
Publsiher: Springer Nature
Total Pages: 1836
Release: 2021-06-26
Genre: Technology & Engineering
ISBN: 9783030738822

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This book gathers selected research papers presented at the First International Conference on Digital Technologies and Applications (ICDTA 21), held at Sidi Mohamed Ben Abdellah University, Fez, Morocco, on 29–30 January 2021. highlighting the latest innovations in digital technologies as: artificial intelligence, Internet of things, embedded systems, network technology, information processing, and their applications in several areas such as hybrid vehicles, renewable energy, robotic, and COVID-19. The respective papers encourage and inspire researchers, industry professionals, and policymakers to put these methods into practice.

State Estimation and Control for Low cost Unmanned Aerial Vehicles

State Estimation and Control for Low cost Unmanned Aerial Vehicles
Author: Chingiz Hajiyev,Halil Ersin Soken,Sıtkı Yenal Vural
Publsiher: Springer
Total Pages: 232
Release: 2015-06-10
Genre: Technology & Engineering
ISBN: 9783319164175

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This book discusses state estimation and control procedures for a low-cost unmanned aerial vehicle (UAV). The authors consider the use of robust adaptive Kalman filter algorithms and demonstrate their advantages over the optimal Kalman filter in the context of the difficult and varied environments in which UAVs may be employed. Fault detection and isolation (FDI) and data fusion for UAV air-data systems are also investigated, and control algorithms, including the classical, optimal, and fuzzy controllers, are given for the UAV. The performance of different control methods is investigated and the results compared. State Estimation and Control of Low-Cost Unmanned Aerial Vehicles covers all the important issues for designing a guidance, navigation and control (GNC) system of a low-cost UAV. It proposes significant new approaches that can be exploited by GNC system designers in the future and also reviews the current literature. The state estimation, control and FDI methods are illustrated by examples and MATLAB® simulations. State Estimation and Control of Low-Cost Unmanned Aerial Vehicles will be of interest to both researchers in academia and professional engineers in the aerospace industry. Graduate students may also find it useful, and some sections are suitable for an undergraduate readership.

Advances in Aerospace Guidance Navigation and Control

Advances in Aerospace Guidance  Navigation and Control
Author: Joël Bordeneuve-Guibé,Antoine Drouin,Clément Roos
Publsiher: Springer
Total Pages: 740
Release: 2015-04-04
Genre: Technology & Engineering
ISBN: 9783319175188

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The two first CEAS (Council of European Aerospace Societies) Specialist Conferences on Guidance, Navigation and Control (CEAS EuroGNC) were held in Munich, Germany in 2011 and in Delft, The Netherlands in 2013. ONERA The French Aerospace Lab, ISAE (Institut Supérieur de l’Aéronautique et de l’Espace) and ENAC (Ecole Nationale de l’Aviation Civile) accepted the challenge of jointly organizing the 3rd edition. The conference aims at promoting new advances in aerospace GNC theory and technologies for enhancing safety, survivability, efficiency, performance, autonomy and intelligence of aerospace systems. It represents a unique forum for communication and information exchange between specialists in the fields of GNC systems design and operation, including air traffic management. This book contains the forty best papers and gives an interesting snapshot of the latest advances over the following topics: l Control theory, analysis, and design l Novel navigation, estimation, and tracking methods l Aircraft, spacecraft, missile and UAV guidance, navigation, and control l Flight testing and experimental results l Intelligent control in aerospace applications l Aerospace robotics and unmanned/autonomous systems l Sensor systems for guidance, navigation and control l Guidance, navigation, and control concepts in air traffic control systems For the 3rd CEAS Specialist Conference on Guidance, Navigation and Control the International Program Committee conducted a formal review process. Each paper was reviewed in compliance with standard journal practice by at least two independent and anonymous reviewers. The papers published in this book were selected from the conference proceedings based on the results and recommendations from the reviewers.

Small Unmanned Aircraft

Small Unmanned Aircraft
Author: Randal W. Beard,Timothy W. McLain
Publsiher: Princeton University Press
Total Pages: 317
Release: 2012-02-26
Genre: Technology & Engineering
ISBN: 9781400840601

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Autonomous unmanned air vehicles (UAVs) are critical to current and future military, civil, and commercial operations. Despite their importance, no previous textbook has accessibly introduced UAVs to students in the engineering, computer, and science disciplines--until now. Small Unmanned Aircraft provides a concise but comprehensive description of the key concepts and technologies underlying the dynamics, control, and guidance of fixed-wing unmanned aircraft, and enables all students with an introductory-level background in controls or robotics to enter this exciting and important area. The authors explore the essential underlying physics and sensors of UAV problems, including low-level autopilot for stability and higher-level autopilot functions of path planning. The textbook leads the student from rigid-body dynamics through aerodynamics, stability augmentation, and state estimation using onboard sensors, to maneuvering through obstacles. To facilitate understanding, the authors have replaced traditional homework assignments with a simulation project using the MATLAB/Simulink environment. Students begin by modeling rigid-body dynamics, then add aerodynamics and sensor models. They develop low-level autopilot code, extended Kalman filters for state estimation, path-following routines, and high-level path-planning algorithms. The final chapter of the book focuses on UAV guidance using machine vision. Designed for advanced undergraduate or graduate students in engineering or the sciences, this book offers a bridge to the aerodynamics and control of UAV flight.