This book explains unmanned systems including unmanned aerial vehicles (UAV), autonomous under water vehicles (AUV), and unmanned ground vehicles (UGV). It also details their basic design, components/sub-components, sensors, employed payloads, and communication systems.
This book explains unmanned systems including unmanned aerial vehicles (UAV), autonomous under water vehicles (AUV), and unmanned ground vehicles (UGV). It also details their basic design, components/sub-components, sensors, employed payloads, and communication systems.
Dr Narayan Panigrahi heads a team of scientists at the Center for Artificial Intelligence and Robotics, a premier laboratory of the Defence Research and Development Organization, India. He is engaged in building capacity and capability in the research and development of Geographic Information System (GIS) and its applications in different domains and is also pursuing his research for the design and development of indigenous geospatial and spatio-temporal algorithms. He has been instrumental in designing and developing Indigenous GIS for military applications and GIS for cross-domain applications in terrain-bathymetry and space. He is the recipient of many awards, including the Best Graduate & Governor's Gold Medal of Berhampur University (1987), Best Research Award by INRIA France (2012), and the Agni Award for Self-Reliance (2019). He is a recipient of the National Geospatial Award for excellence (2019) and National Geomatics Award for excellence (2023). Smita Tripathy joined as a scientist in the Light Combat Aircraft (LCA) programme of the Aeronautical Development Agency, Ministry of Defence, India, in 1998. Since then, she has been engaged in the research and development of avionic systems of LCA. She has contributed to the design and development of avionics system, and her primary interest lies in the design and development of avionic systems and subsystems of LCA.
Inhaltsangabe
Chapter 1: Introduction to Unmanned Autonomous Systems (UAS) Chapter 2: Crafting an Unmanned Aerial Vehicle (UAV) Chapter 3: Designing the fuselage, wing, propulsion, and empennage of a fixed-wing UAV Chapter 4: Application-specific UAVs and their requirements Chapter 5: Classifications of different UAVs Chapter 6: Counter-UAS systems Chapter 7: Design criteria of a UAV for photogrammetry and ISTAR applications Chapter 8: Autonomous Underwater Vehicles (AUVs) Chapter 9: Essential design concepts of AUVs Chapter 10: Unmanned Ground Vehicles (UGVs) Chapter 11: Crafting a UGV Chapter 12: Algorithms, control, and software used for UAS missions
Chapter 1: Introduction to Unmanned Autonomous Systems (UAS) Chapter 2: Crafting an Unmanned Aerial Vehicle (UAV) Chapter 3: Designing the fuselage, wing, propulsion, and empennage of a fixed-wing UAV Chapter 4: Application-specific UAVs and their requirements Chapter 5: Classifications of different UAVs Chapter 6: Counter-UAS systems Chapter 7: Design criteria of a UAV for photogrammetry and ISTAR applications Chapter 8: Autonomous Underwater Vehicles (AUVs) Chapter 9: Essential design concepts of AUVs Chapter 10: Unmanned Ground Vehicles (UGVs) Chapter 11: Crafting a UGV Chapter 12: Algorithms, control, and software used for UAS missions
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