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Un-cooled Infrared Sensor and Digital Image Processing for Guided System

Abstract第3页
Contents第4-7页
1. Introduction第7-13页
    1.1 Military Needs第7-8页
    1.2 Development of infrared technique第8-9页
    1.3 Development of un-cooled infrared sensor第9-11页
        1.3.1 Back ground and development of un-cooled infrared sensor第9-10页
        1.3.2 Comparison of cooled and un-cooled infrared sensor第10-11页
    1.4 Application of infrared imaging system第11-12页
    1.5 Main Research of paper第12-13页
2. Theory of Un-cooled infrared sensor第13-23页
    2.1 Principle of un-cooled infrared sensor第13-14页
    2.2 Importance thermal isolation structure第14-16页
    2.3 Principal of thermal detection mechanism第16-23页
        2.3.1 Resistive bolometer第16-18页
        2.3.2 Pyroelectric detector and ferroelectric bolometer第18-19页
        2.3.3 Thermoelectric detector第19-23页
3. Bolometer and charged couple device第23-36页
    3.1 Monolithic silicon micro bolometer第23-34页
        3.1.1 Background第23-24页
        3.1.2 Micro bolometer model第24-26页
        3.1.3 Resistance change in micro bolometer materials第26-27页
        3.1.4 Micro bolometer heat balance equation第27-29页
        3.1.5 Heat balance of applied bias第29-30页
        3.1.6 Calculation of V-I curve第30页
        3.1.7 Metal like temperature coefficient of resistance第30-31页
        3.1.8 Semiconductor like temperature coefficient of resistance第31页
        3.1.9 Noise equivalent power (NEP)第31页
        3.1.10 Noise equivalent temperature difference (NETD)第31-32页
        3.1.11 Detectivity第32页
        3.1.12 Electronic read out circuit for two dimensional micro bolometer array第32-33页
        3.1.13 Micro bolometer physical design and fabrication第33页
        3.1.14 One level micro bolometer第33-34页
        3.1.15 Two level micro bolometer第34页
    3.2 Charge couple device (CCD)第34-36页
4. Fusion Image of Infrared and low light level CCD第36-48页
    4.1 Development of image fusion第36-38页
    4.2 Digital signal processing of fusion image第38-39页
    4.3 Image fusion application第39-41页
    4.4 Image fusion algorithms第41-45页
        4.4.1 Weight averaging pixel method第42页
        4.4.2 Pyramidal method第42-45页
    4.5 Image fusion evaluation and image quality measure method第45-48页
        4.5.1 Standard Deviation (SD)第46页
        4.5.2 Entropy (EN)第46-47页
        4.5.3 Cross Entropy (CE)第47-48页
5. Experiment results analysis and algorithm第48-67页
    5.1 Indoor experiment results第48-59页
        5.1.1 Experiment result analysis (visual)第55-56页
        5.1.2 Histogram of images第56-58页
        5.1.3 Result of image quality measured method第58-59页
    5.2 Outdoor experiment results第59-66页
        5.2.1 Experiment result analysis (visual)第64页
        5.2.2 Histogram of images第64-65页
        5.2.3 Result of image quality measured method第65-66页
    5.3 Result analysis for indoor and outdoor results第66-67页
6. Conclusion第67-70页
    6.1 Summary第67-68页
    6.2 Innovation第68页
    6.3 Future Trend第68-70页
Acknowledgement第70-71页
Reference第71-75页
Appendices第75-93页
    Appendix-1 Fusion tool MATLAB TOOL M file第75-87页
    Appendix-2 Infrared image histogram M files第87页
    Appendix-3 Low light level image histograms M file第87页
    Appendix-4 Average fusion image SD and entropy M file第87-88页
    Appendix-5 Average fusion image cross entropy M file第88-89页
    Appendix-6 LP fusion image SD and entropy M file第89-90页
    Appendix-7 LP fusion image cross entropy M file第90-91页
    Appendix-8 Infrared images SD and entropy M file第91-92页
    Appendix-9 Low light level image SD and entropy M file第92-93页

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