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Introduction to Multicopter Design and Control [electronic resource] / by Quan Quan.

By: Quan, Quan [author.].
Contributor(s): SpringerLink (Online service).
Material type: materialTypeLabelBookPublisher: Singapore : Springer Nature Singapore : Imprint: Springer, 2017Edition: 1st ed. 2017.Description: XXVI, 384 p. 205 illus., 128 illus. in color. online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9789811033827.Subject(s): Control engineering | Robotics | Automation | Aerospace engineering | Astronautics | Control, Robotics, Automation | Control and Systems Theory | Aerospace Technology and AstronauticsAdditional physical formats: Printed edition:: No title; Printed edition:: No title; Printed edition:: No titleDDC classification: 629.8 Online resources: Click here to access online
Contents:
Introduction -- PART I DESIGN -- Basic Composition -- Configuration and Structural Design -- Modeling and evaluation of propulsion system -- PART II MODELING -- Coordinate system and attitude representation -- Dynamic model and parameter identification -- PART III ESTIMATION -- Sensor model and calibration -- Observability and Kalman filter -- State estimation -- PART IV CONTROL -- Stability and Controllability -- Low-Level Flight Control -- Position Control based on SemiAutonomous Autopilot -- PART V DECISION -- Mission Decision-Making -- Health Evaluation and Failsafe -- Outlook.
In: Springer Nature eBookSummary: This book is the first textbook specially on multicopter systems in the world. It provides a comprehensive overview of multicopter systems, rather than focusing on a single method or technique. The fifteen chapters are divided into five parts, covering the topics of multicopter design, modeling, state estimation, control, and decision-making. It differs from other books in the field in three major respects: it is basic and practical, offering self-contained content and presenting hands-on methods; it is comprehensive and systematic; and it is timely. It is also closely related to the autopilot that users often employ today and provides insights into the code employed. As such, it offers a valuable resource for anyone interested in multicopters, including students, teachers, researchers, and engineers.
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Introduction -- PART I DESIGN -- Basic Composition -- Configuration and Structural Design -- Modeling and evaluation of propulsion system -- PART II MODELING -- Coordinate system and attitude representation -- Dynamic model and parameter identification -- PART III ESTIMATION -- Sensor model and calibration -- Observability and Kalman filter -- State estimation -- PART IV CONTROL -- Stability and Controllability -- Low-Level Flight Control -- Position Control based on SemiAutonomous Autopilot -- PART V DECISION -- Mission Decision-Making -- Health Evaluation and Failsafe -- Outlook.

This book is the first textbook specially on multicopter systems in the world. It provides a comprehensive overview of multicopter systems, rather than focusing on a single method or technique. The fifteen chapters are divided into five parts, covering the topics of multicopter design, modeling, state estimation, control, and decision-making. It differs from other books in the field in three major respects: it is basic and practical, offering self-contained content and presenting hands-on methods; it is comprehensive and systematic; and it is timely. It is also closely related to the autopilot that users often employ today and provides insights into the code employed. As such, it offers a valuable resource for anyone interested in multicopters, including students, teachers, researchers, and engineers.

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