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Handbook of Systems Engineering and Analysis of Electro-Optical and Infrared Systems 2nd edition [Multiple-component retail product]

(Florida Institute of Technology, Melbourne, USA)
  • Formāts: Multiple-component retail product, 1541 pages, height x width: 254x178 mm, weight: 3100 g, 218 Tables, black and white; 620 Line drawings, black and white; 75 Halftones, black and white; 695 Illustrations, black and white, Contains 2 hardbacks
  • Izdošanas datums: 29-Jun-2025
  • Izdevniecība: CRC Press
  • ISBN-10: 1032222425
  • ISBN-13: 9781032222424
  • Multiple-component retail product
  • Cena: 282,30 €
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Handbook of Systems Engineering and Analysis of Electro-Optical and Infrared  Systems 2nd edition
  • Formāts: Multiple-component retail product, 1541 pages, height x width: 254x178 mm, weight: 3100 g, 218 Tables, black and white; 620 Line drawings, black and white; 75 Halftones, black and white; 695 Illustrations, black and white, Contains 2 hardbacks
  • Izdošanas datums: 29-Jun-2025
  • Izdevniecība: CRC Press
  • ISBN-10: 1032222425
  • ISBN-13: 9781032222424
Electro-Optical and Infrared Systems (EO/IR) are fundamental in many areas including the military, medical, commercial, industrial, and private sectors. This second edition 2-volume set integrates solid fundamental systems engineering principles, methods, and techniques with the technical focus of contemporary EO/IR optics, imaging, and detection methodologies and systems.

Handbook of Systems Engineering and Analysis of Electro-Optical and Infrared Systems Second Edition, Two-Volume Set offers more information on Decision and Risk Analysis, and Statistical Methods in Systems Engineering such as Design of Experiments (DOX) Methods, Hypothesis Testing, Analysis of Variance, Blocking, 2k Factorial Analysis, and Regression Analysis. It includes new material on Systems Architecture, Digital Engineering (including the Digital Thread and Digital Twin), DEVOPS, and material on how to optimally develop complex and complicated systems. An expanded section on Model-Based Systems Engineering (MBSE) is presented along with useful application examples. As well as a new chapter on Agile methods and when and when not to use this approach, a new chapter on Decision and Risk Analysis methods (including a section on Game Theory), and a chapter focusing on lifecycle cost estimation methods. The integration of recent high-speed atmospheric turbulence research results in the optical technical examples and case studies to illustrate the new developments are also included. A presentation of new optical technical materials on Adaptive Optics (AO), Atmospheric Turbulence Compensation (ATC), and Laser Systems along with a more generalized section on disposability are also key updates that are emphasized in the second edition 2-volume set.

Because this 2-volume set blends modern-day Systems Engineering methods with detailed Optical Systems Analysis and applies these methodologies to EO/IR systems, this new edition is an excellent text for professionals in STEM disciplines that work with optical or infrared systems. Its also a great practical reference text for the practicing engineer, and a solid educational text for graduate-level systems engineering, engineering, science, and technology students.

Handbook of Systems Engineering and Analysis of Electro-Optical and Infrared Systems: Concepts, Principles, and Methods (978-1-041-03385-1) and Handbook of Systems Engineering and Analysis of Electro-Optical and Infrared Systems: Applications, Tools, and Techniques (978-1-041-03520-6) can also be purchased individually. Color Figures are available on Routledge.com.
Volume I - Section 1: The Larger Context of Contemporary Systems
Engineering: Enterprise Architecture, System Architecture, System-of-Systems,
Family-of-Systems, Complex, Complicated, and Adaptive Systems, Digital
Engineering, DevOps/DevSecOps, and Wicked Problems.
1. Systems Engineering in
the Modern Age.
2. Enterprise Architectures Fundamentals.
3. Systems of
Systems, Family of Systems, and Systems Engineering.
4. Systems Architecture
and Complex Systems Overview. Section 2: Contemporary Systems Engineering
Principles, Methods, and Techniques.
5. Model-Based Systems Engineering.
6.
Research Methods and Experimental Design in Systems Engineering.
7. Decision
Making and Risk Analysis in Systems Engineering.
8. Agile Systems
Engineering.
9. Appendix: Mathematical Formulas. Volume II Section 1:
Application of Systems Engineering Tools, Methods, and Techniques to Optical
Systems.
1. Problem Definition.
2. Feasibility Studies, Trade Studies, and
Alternative Analysis.
3. Systems and Requirements.
4. Maintenance and Support
Planning.
5. Technical Performance Measures and Metrics.
6. Functional
Analysis and Detector Cooling.
7. Requirements Allocation.
8. Introduction to
System Design.
9. Quality Production and Manufacturing.
10. Optical Systems
Testing and Evaluation.
11. Optical System Use and Support.
12. Disposal and
Retirement of Optical Systems. Section 2: Bringing it all Together.
13.
Bringing it all together .
14. Bringing it all together: Integrated
Lifecycle Cost & Schedule Estimate (ILCaSE) in Systems Engineering.
15.
Appendix: Mathematical Formulas.
Dr. Arrasmith is currently a professor in the Department of Mathematics and Systems Engineering at FIT. He has 20 years of experience with government research and development programs and has had extensive exposure to electro-optical, infrared, and laser detection systems. Before his position at Florida Tech, Dr. Arrasmith served as Program Manager of Physics and Electronics at the Air Force Office of Scientific Research (AFOSR) in Washington DC. In 1997 he moved to the United States Naval Academy in Annapolis, Maryland to teach courses in Engineering and Linear Adaptive Optics. Dr. Arrasmith was then reassigned to the Air Force Technical Applications Center (AFTAC) at Patrick Air Force Base where he became Chief of the Systems and Technology Division. He was later appointed Division Chief for the Advanced Science and Technology Division of the AFTAC and remained in the position until joining Florida Tech in 2003.