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Unmanned Rotorcraft Systems [electronic resource] / by Guowei Cai, Ben M. Chen, Tong Heng Lee.

By: Contributor(s): Material type: TextTextSeries: Advances in Industrial ControlPublisher: London : Springer London : Imprint: Springer, 2011Description: XIX, 270 p. 167 illus., 140 illus. in color. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780857296351
Subject(s): Additional physical formats: Printed edition:: No titleDDC classification:
  • 629.8 23
LOC classification:
  • TJ212-225
Online resources:
Contents:
Introduction -- Systematic Hardware construction -- Software System Integration -- Aerodynamic Modeling and System Identification -- Measurement Signal Enhancement -- Automatic Flight Control -- Flight Simulation and Experiment -- Cooperative Control of Multiple Rotorcraft -- Vision-based Tracking and Landing -- Micro Aerial Vehicles -- Future Research.
In: Springer eBooksSummary: Unmanned Rotorcraft Systems explores the research and development of fully-functional miniature rotorcraft unmanned aerial vehicles (UAV), and provides a complete treatment of their design. The unmanned system is an integration of advanced technologies developed in communications, computing, and control areas. It is a useful testing ground for trialing and implementing modern control techniques despite the challenges introduced by the limitations on direct scalability between the systems of a small-scale rotorcraft and those of its full-scale counterpart. Included are detailed expositions of: systematic hardware construction; software systems integration; aerodynamic modeling; and automatic flight control system design. Emphasis is placed on the cooperative control and flight formation of multiple UAVs, vision-based ground-target tracking, and landing on moving platforms. Other issues such as the development of indoor micro aerial vehicles (that have to operate without access to a global positioning system) and vision-based navigation are also discussed in depth. The text is rounded out with a presentation of possible future research directions for relevant fields of study. Unmanned Rotorcraft Systems will be of great value to practicing engineers in aerospace-related industries and to academic researchers from aerospace, electrical or mechanical engineering backgrounds working on the development of unmanned systems.
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Item type Current library Call number Status Date due Barcode
E-Book E-Book Central Library Available E-38315

Introduction -- Systematic Hardware construction -- Software System Integration -- Aerodynamic Modeling and System Identification -- Measurement Signal Enhancement -- Automatic Flight Control -- Flight Simulation and Experiment -- Cooperative Control of Multiple Rotorcraft -- Vision-based Tracking and Landing -- Micro Aerial Vehicles -- Future Research.

Unmanned Rotorcraft Systems explores the research and development of fully-functional miniature rotorcraft unmanned aerial vehicles (UAV), and provides a complete treatment of their design. The unmanned system is an integration of advanced technologies developed in communications, computing, and control areas. It is a useful testing ground for trialing and implementing modern control techniques despite the challenges introduced by the limitations on direct scalability between the systems of a small-scale rotorcraft and those of its full-scale counterpart. Included are detailed expositions of: systematic hardware construction; software systems integration; aerodynamic modeling; and automatic flight control system design. Emphasis is placed on the cooperative control and flight formation of multiple UAVs, vision-based ground-target tracking, and landing on moving platforms. Other issues such as the development of indoor micro aerial vehicles (that have to operate without access to a global positioning system) and vision-based navigation are also discussed in depth. The text is rounded out with a presentation of possible future research directions for relevant fields of study. Unmanned Rotorcraft Systems will be of great value to practicing engineers in aerospace-related industries and to academic researchers from aerospace, electrical or mechanical engineering backgrounds working on the development of unmanned systems.

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