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9780470664803

Unmanned Aircraft Systems : UAVS Design, Development and Deployment

by
  • ISBN13:

    9780470664803

  • ISBN10:

    0470664800

  • Format: eBook
  • Copyright: 2010-03-01
  • Publisher: Wiley
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Summary

Unmanned Aircraft Systems delivers a much needed introduction to UAV System technology, taking an integrated approach that avoids compartmentalising the subject. Arranged in four sections, parts 1-3 examine the way in which various engineering disciplines affect the design, development and deployment of UAS. The fourth section assesses the future challenges and opportunities of UAS.

Technological innovation and increasingly diverse applications are two key drivers of the rapid expansion of UAS technology. The global defence budget for UAS procurement is expanding, and in the future the market for civilian UAVs is expected to outmatch that of the military. Agriculture, meteorology, conservation and border control are just a few of the diverse areas in which UAVs are making a significant impact; the author addresses all of these applications, looking at the roles and technology behind both fixed wing and rotorcraft UAVs.

Table of Contents

Foreword
Acknowledgements
Series Preface
Preface
Units and Abbreviations
Introduction to Unmanned Aircraft Systems (UAS)
Some Applications of UAS
What are UAS?
Why Unmanned Aircraft?
The Systemic Basis of UAS
System Composition
References
The Design of Uav Systems
Introduction to Design and Selection of the System
Conceptual Phase
Preliminary Design
Detail Design
Selection of the System
Aerodynamics and Airframe Configurations
Lift-induced Drag
Parasitic Drag
Rotary-wing Aerodynamics
Response to Air Turbulence
Airframe Configurations
Summary
References
Characteristics of Aircraft Types
Long-endurance, Long-range Rôle Aircraft
Medium-range, Tactical Aircraft
Close-range/Battlefield Aircraft
MUAV Types
MAV and NAV Types
UCAV
Novel Hybrid Aircraft Configurations
Research UAV
References
Design Standards and Regulatory Aspects
Introduction
United Kingdom
Europe
United States of America
Conclusion
References
Aspects of Airframe Design
Scale Effects
Packaging Density
Aerodynamics
Structures and Mechanisms
Selection of power-plants
Modular Construction
Ancillary Equipment
References
Design for Stealth
Acoustic Signature
Visual Signature
Thermal Signature
Radio/Radar Signature
Examples in Practice
Reference
Payload Types
Nondispensable Payloads
Dispensable Payloads
Reference
Communications
Communication Media
Radio Communication
Mid-air Collision (MAC) Avoidance
Communications Data Rate and Bandwidth Usage
Antenna Types
References
Control and Stability
HTOL Aircraft
Helicopters
Convertible Rotor Aircraft
Payload Control
Sensors
Autonomy
References
Navigation
NAVSTAR Global Positioning System (GPS)
TACAN
LORAN C
Inertial Navigation
Radio Tracking
Way-point Navigation
References
Launch and Recovery
Launch
Recovery
Summary
Control Stations
Control Station Composition
Open System Architecture
Mini-UAV 'Laptop' Ground Control Station
Close-range UAV Systems GCS
Medium- and Long-range UAV System GCS
Sea Control Stations (SCS)
Air Control Stations (ACS)
Support Equipment
Operating and Maintenance Manuals
Consumables
Replaceable Components
Vulnerable and On-condition Components
Tools
Subsidiary Equipment
Transportation
Micro-UAV
VTOL Close-range Systems
HTOL Close-range Systems
Medium-range Systems
MALE and HALE Systems
Design for Reliability
Determination of the Required Level of Reliability
Achieving Reliability
Reliability Data Presentation
Multiplexed Systems
Reliability by Design
Design for Ease of Maintenance
Design for Manufacture and Development
The Development of Uav Systems
Introduction to System Development and Certification
System Development
Certification
Establishing Reliability
System Ground Testing
UAV Component Testing
UAV Sub-assembly and Sub-system Testing
Testing Complete UAV
Control Station Testing
Catapult Launch System Tests
Documentation
System In-flight Testing
Test Sites
Preparation for In-flight Testing
In-flight Testing
System Certification
The Deployment of Uav Systems
Operational Trials and Full Certification
Company Trials
Customer Trials and Sales Demonstrations
UAV System Deployment
Introduction
Network-centric Operations (NCO)
Teaming with Manned and Other Unmanned Systems
Naval Rôles
Fleet Detection and Shadowing
Radar Confusion
Missile Decoy
Anti-submarine Warfare
Radio Relay
Port Protection
Over-beach Reconnaissance
Fisheries Protection
Detection of Illegal Imports
Electronic Intelligence
Maritime Surveillance
Summary
Army Rôles
Covert Reconnaissance and Surveillance
Fall-of-shot Plotting
Target Designation by Laser
NBC Contamination Monitoring
IED and Landmine Detection and Destruction
Electronic Intelligence
Teaming of Manned and Unmanned Systems
System Mobility
Persistent Urban Surveillance
Air Force Rôles
Long-range Reconnaissance and Strike
Airborne Early Warning
Electronic Intelligence
Pre-strike Radar and Anti-aircraft Systems Counter
Interception
Airfield Security
Civilian, Paramilitary and Commercial Rôles
Aerial Photography.
Agriculture
Coastguard and Lifeboat Institutions
Customs and Excise
Conservation
Electricity Companies
Fire Services
Fisheries
Gas and Oil Supply Companies
Information Services
Local Civic Authorities
Meteorological Services.
Traffic Agencies
Ordnance Survey
Police Authorities.
Rivers Authorities and Water Boards
Survey Organisations
Communications Relay
Landmine Detection and Destruction
Other Applications
References
UAS Future
Future Prospects and Challenges
Introduction
Operation in Civilian Airspace
Power-plant Development
Developments in Airframe Configurations
Autonomy and Artificial Intelligence
Improvement in Communication Systems
References
UAV Systems Continuing Evolution
Introduction
Cruise Missiles
World War II Systems
The 1950s
The 1960s
The 1970s
The 1980s
The 1990s
The 2000s
The 2010s
Into the Future
UAS Organisations
Conferences
Industry Associations
Press Organisations
Useful Websites
Test Site Facilities
Regulators
Index
Table of Contents provided by Publisher. All Rights Reserved.

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