Electro-Optical/Infrared Sensor Training Sessions
Budget: $1,500 – $3,000 USD
Require a trainer for conducting sessions in Abu Dhabi for a corporate client on Electro – Optical / Infrared Sensors. Trainer needs to be based in UAE.
Electro-Optical/Infrared (EO/IR) Sensors course is designed to cover the foundation of Electro Optical/Infrared (EO/IR) Sensors, theory of operations, modeling, simulation, performance evaluation, test procedures, and test result interpretations. EO/IR systems cover a wide range of distinct technologies based on the targets and the mission to be accomplished. The target phenomenology may dominate the choice of spectral band. For example, missile launch detection depends on the very hot missile exhaust, which produces the majority of radiation in the UV. The band choice is also influenced by the vagaries of the atmosphere (transmission and scattering). Performance of an EO/IR sensor depends on many factors including the optics, detector, and display, the optics modulation transfer function (MTF) and all the factors affecting image quality interact; hence we recommend the use of modeling and detailed system analysis to interpret potential sensor performance.
After completing this course, participants should be able to:
•Learn the underlying principles behind sensors and associated technologies
•Learn basics of electro-optic and infrared (EO/IR) sensors and the theory of operation
•Explain the basis and operation of EO-IR-based sensor systems and their data processors
•Explore the importance of EO/IR technology and system applications
•Review and list the underlying principles of EO-IR systems
•List the major components and technologies of EO-IR sensor systems.
•Explain basics of EO/IR sensor modeling, simulation, testing and evaluation processes
•Derive requirements for EO/IR system models, ISR applications, EO-IR Sensors, weapons, Electronic Warfare (EW) Systems and data fusion
•List major system design and performance parameters and issues
•Explain the verification and validation process for EO/IR sensors, applications and data processors
•Evaluate and select the best EO/IR sensor solutions for any given operational scenario
•List the key impact of environmental processes affecting EO-IR system operation
•Explain technology and operational trends in EO-IR systems
•Appreciate the likely future advances in the EO/IR technologies
Duration is TBD, will range from a week to a month.
Electro-Optical/Infrared (EO/IR) Sensors course is designed to cover the foundation of Electro Optical/Infrared (EO/IR) Sensors, theory of operations, modeling, simulation, performance evaluation, test procedures, and test result interpretations. EO/IR systems cover a wide range of distinct technologies based on the targets and the mission to be accomplished. The target phenomenology may dominate the choice of spectral band. For example, missile launch detection depends on the very hot missile exhaust, which produces the majority of radiation in the UV. The band choice is also influenced by the vagaries of the atmosphere (transmission and scattering). Performance of an EO/IR sensor depends on many factors including the optics, detector, and display, the optics modulation transfer function (MTF) and all the factors affecting image quality interact; hence we recommend the use of modeling and detailed system analysis to interpret potential sensor performance.
After completing this course, participants should be able to:
•Learn the underlying principles behind sensors and associated technologies
•Learn basics of electro-optic and infrared (EO/IR) sensors and the theory of operation
•Explain the basis and operation of EO-IR-based sensor systems and their data processors
•Explore the importance of EO/IR technology and system applications
•Review and list the underlying principles of EO-IR systems
•List the major components and technologies of EO-IR sensor systems.
•Explain basics of EO/IR sensor modeling, simulation, testing and evaluation processes
•Derive requirements for EO/IR system models, ISR applications, EO-IR Sensors, weapons, Electronic Warfare (EW) Systems and data fusion
•List major system design and performance parameters and issues
•Explain the verification and validation process for EO/IR sensors, applications and data processors
•Evaluate and select the best EO/IR sensor solutions for any given operational scenario
•List the key impact of environmental processes affecting EO-IR system operation
•Explain technology and operational trends in EO-IR systems
•Appreciate the likely future advances in the EO/IR technologies
Duration is TBD, will range from a week to a month.