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FPGA-based data processing module design of on-board radio metric calibration in visibleear infrared bands

机译:基于FPGA的数据处理模块设计,用于可见/近红外波段的车载无线电度量标准校准

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FPGA technology has long been applied to on-board radiometric calibration data processing however the integration of FPGA program is not good enough. For example, some sensors compressed remote sensing images and transferred to ground station to calculate the calibration coefficients. It will affect the timeliness of on-board radiometric calibration. This paper designs an integrated flow chart of on-board radiometric calibration. Building FPGA-based radiometric calibration data processing modules uses system generator. Thesis focuses on analyzing the calculation accuracy of FPGA-based two-point method and verifies the feasibility of this method. Calibration data was acquired by hardware platform which was built using integrating sphere, CMOS camera (canon 60d), ASD spectrometers and light filter (center wavelength: 690nm, bandwidth: 45nm). The platform can simulate single-band on-board radiometric calibration data acquisition in visibleear infrared band. Making an experiment of calibration coefficients calculation uses obtained data and FPGA modules. Experimental results show that: the camera linearity is above 99% meeting the experimental requirement. Compares with MATLAB the calculation accuracy of two-point method by FPGA are as follows: the error of gain value is 0.0053%; the error of offset value is 0.00038719%. Those results meet experimental accuracy requirement.
机译:FPGA技术长期以来一直用于车载辐射定标数据处理,但是FPGA程序的集成还不够好。例如,一些传感器将遥感图像压缩并传输到地面站以计算校准系数。这将影响车载辐射校准的及时性。本文设计了车载辐射校准的综合流程图。构建基于FPGA的辐射定标数据处理模块使用系统生成器。本文重点分析了基于FPGA的两点法的计算精度,并验证了该方法的可行性。通过硬件平台获取校准数据,该硬件平台使用积分球,CMOS相机(佳能60d),ASD光谱仪和滤光片(中心波长:690nm,带宽:45nm)构建。该平台可以模拟可见/近红外波段的单波段车载辐射定标数据。使用获得的数据和FPGA模块进行校准系数计算的实验。实验结果表明:摄像机线性度达到99%以上,满足实验要求。与MATLAB相比,FPGA的两点法计算精度如下:增益值误差为0.0053%。偏移值的误差为0.00038719%。这些结果符合实验精度要求。

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