Design of Control Laws and State Observers for Fixed-Wing UAVs: Simulation and Experimental Approaches provides readers with modeling techniques, simulations, and results from real-time experiments using linear and nonlinear controllers and state observers. The book starts with an overview of the history of UAVs and the equations of motion applied to them. Following chapters analyze linear and nonlinear controllers, state observers, and the book concludes with a chapter discussing testbed development and experimental results, equipping readers with the knowledge they need to conduct their own stable UAV flights whether in simulation or real-time. - Presents aerodynamic models for fixed-wing UAVs that can be used to design control laws and state observers - Applies linear and nonlinear control theories and state observers to fixed-wing UAVs - Provides real-time flight and simulation test results of fixed-wing UAVs with linear and nonlinear controllers



Autorentext

Arturo Tadeo Espinoza-Fraire has been a professor and researcher in the Faculty of Engineering, Science, and Architecture, University Juárez of the Durango State, Gómez Palacio, Durango, Mexico since 2016. He obtained his BSc degree in Electronic Engineering from the Superior Technological Institute of Lerdo, Cd. Lerdo Durango Mexico, in 2007, and the MSc and the Ph.D. in Electrical Engineering from the Technological Institute of La Laguna, Torreon Coahuila Mexico, in 2011 and 2015, respectively. His research interests are linear and nonlinear control theory, navigation, and control of UAVs and embedded systems. Prof. Espinoza-Fraire has been a member of the Technical International Commit of the International Conference of Unmanned Aerial Systems since 2014 as well as the Research National System with the distinction of level-I in Mexico. He is also an honorific level of the National System of Research in Durango Stater, Mexico.

Titel
Design of Control Laws and State Observers for Fixed-Wing UAVs
Untertitel
Simulation and Experimental Approaches
EAN
9780323954044
Format
E-Book (epub)
Digitaler Kopierschutz
Wasserzeichen
Dateigrösse
35.91 MB
Anzahl Seiten
290