Chapter 1 Overview of optoelectronic systems and their design 1.1 Definition, basic components and design of optoelectronic systems 1.1.1 Definition of optoelectronic systems 1.1.2 Basic components and examples of optoelectronic systems 1.1.3 Design overview 1.2 Classification, development and application of optoelectronic systems 1.2.1 Classification of optoelectronic systems 1.2.2 Development of optoelectronic systems 1.2.3 Applications of optoelectronic systems 1.3 Development basis and constraints of optoelectronic systems 1.3.1 Development basis of optoelectronic systems 1.3.2 Major constraints on the development of optoelectronic technology and systems 1.4 Changes in optoelectronic system design ideas 1.5 Design process and trial production progress of optoelectronic systems 1.5.1 Design process and results of optoelectronic systems 1.5.2 Trial production progress of optoelectronic systems 1.6 Engineering design control procedures for optoelectronic products 1.6.1 Design input control 1.6.2 Design process control 1.6.3 Design output control 1.6.4 “Six properties” design control 1.6.5 Design review control 1.6.6 Design and development verification and validation control 1.6.7 Experimental control 1.6.8 1.6.9 Design and development change control 1.6.10 Technical services and records 1.7 Technical requirements for optoelectronic product design drawings and documents 1.7.1 Integrity of product drawings and design documents 1.7.2 Contents and requirements of design documents 1.8 Optoelectronic system design and simulation software Chapter 2 Target and environmental radiation and engineering calculations 2.1 Optical radiation and measurement 2.1.1 Optical radiation, infrared radiation and their band division 2.1.2 Photometric and radiometric measurement 2.1.3 Chromatic measurement 2.1.4 Relationship between radiometric measurement, photometric measurement and chromatic measurement 2.2 Absolute black body and its basic laws 2.2.1 Absolute black body and non-black body 2.2.2 Planck\'s law 2.2.3 Stefan-Boltzmann law 2.2.4 Wien\'s displacement law 2.2.5 Lambert\'s cosine law 2.3 Radiation sources and classification of characteristic forms 2.3.1 Radiation source classification 2.3.2 Radiation source characteristic form 2.4 2.4.1 Irradiance of point source, small surface source, Lambertian extended source and imaging system image plane 2.4.2 Irradiance of imaging system image plane 2.5 Calculation of radiant flux of irregular body and method of selecting target area 2.5.1 Calculation of radiant flux of irregular radiating body 2.5.2 Method of selecting target area in radiation calculation 2.6 Classification and characteristics of target and environment optical properties 2.6.1 Space target and deep space background 2.6.2 Aerial target and sky background 2.6.3 Ground target and ground object background 2.6.4 Sea surface target and ocean background 2.7 Radiation characteristics of environment and target light 2.7.1 Radiation characteristics of celestial background light 2.7.2 Radiation characteristics of sunlight 2.7.3 Radiation characteristics of sky background light 2.7.4 Radiation characteristics of ocean background light 2.7.5 Natural radiation source and target radiation source 2.8 Simplified calculation procedure for target radiation Chapter 3 Engineering theory calculation of atmospheric transmittance of radiation 3.1 Composition and structure of the earth\'s atmosphere and its radiation absorption 3.1.1 Composition of the earth\'s atmosphere 3.1.2 Structure of the atmosphere 3.1.3 Radiation absorption of the atmosphere 3.2 Atmospheric attenuation and transmittance 3.3 Physical basis of radiation attenuation in the atmosphere 3.4 Atmospheric transmittance data table 3.5 Molecular absorption of atmospheric gases at sea level 3.6 Molecular absorption correction problems at different altitudes 3.6.1 Correction caused by changes in absorption ability with altitude 3.6.2 Correction caused by changes in molecular density with altitude... Chapter 4 Optical materials, optical structure types and optical design Chapter 5 Photoelectric detection, imaging, display and electronic system design Chapter 6 Target image processing, recognition and tracking Chapter 7 Photoelectric system software development and design Chapter 8 Photoelectric servo control system and its design Chapter 9 Photoelectric system structure, process and modular design Chapter 10 Engineering theory calculation and overall design of the action range of the photoelectric system Chapter 11 The \"six properties\" of the photoelectric system and design references
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