步进框机载遥感光电系统像元级前向运动补偿计算机模型(SF-ORSEOS PL-FMC-CM)

G. Tarek, H. Elsheikh
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摘要

步进框架机载遥感光电系统(SF-ORSEOS)对航空摄影有重大贡献。SF-ORSEOS的视场(FOV)跨越飞行轨迹进行观察,而前向运动补偿(FMC)在焦平面阵列(FPA)中以电子方式执行,以避免场景采集过程中的成像涂抹。SF-ORSEOS参数的兼容性具有挑战性,因为它保证了SF-ORSEOS采集头(镜头,FPA,读出集成电路ROIC)的最可靠结构,以保持采集信息的质量。本文基于像元级时空分辨率,综合考虑飞行速度、飞行高度、观测视角、连续帧重叠、镜头和FPA参数及特性,建立了sseospl -像素级-快速运动补偿-计算机模型(SF-ORSEOSPL-FMC-CM)。SF-ORSEOS PL-FMC-CM的主要贡献在于它根据预定的定制用户要求促进了ROIC的选择和设计。此外,它还提供了定量的可视化工具来预测系统行为。
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Step Frame Onboard Remote Sensing Electro-Optical System Pixel Level Forward Motion Compensation Computer Model (SF-ORSEOS PL-FMC-CM)
Step Frame Onboard Remote Sensing ElectroOptical Systems (SF-ORSEOS) have a major contribution to aerial photography. The SF-ORSEOS Field of View (FOV) is stepped across the flight track to observe a large area while the Forward Motion Compensation (FMC) is performed electronically in Focal Plane Arrays (FPA) to avoid imaging smearing during scene acquisition. The compatibility of the SF-ORSEOS parameters is challenging as it guarantees the most reliable construction of the SF-ORSEOS acquisition head (lens, FPA, ReadOut Integrated Circuit ROIC) that maintains the quality of the acquired information. In this paper, SFORSEOS-Pixel Level - Fast Motion Compensation -Computer Model (SF-ORSEOSPL-FMC-CM) is developed, based on pixel-level Spatio-temporal resolution with considering the flying velocity, flight height, observation looking angle, the overlap of the successive frames, lens and FPA parameters and characteristics. The major contribution of the SF-ORSEOS PL-FMC-CM appears in its facilitation of both the selection and design of the ROIC according to a predetermined custom user requirements. Moreover, it provides quantitative visual tools to predict the system behavior.
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