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Pixel Response Non-Uniformity Correction for Multi-TDICCD Camera based on FPGA

机译:基于FPGA的多TDICCD相机的像素响应不均匀校正

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a non-uniformity correction algorithm is proposed and implemented on a Field-Programmable Gate Array (FPGA) hardware platform to solve a pixel response non-uniformity(PRNU) problem of multi Time Delay and Integration Charge Couple Device(TDICCD) camera. The non-uniformity are introduced and the synthetical correction algorithm is presented, in which the two-point correction method is used in a single channel, gain averaging correction method among multi-channel and the scene-adaptive correction method among multi-TDICCD. Then, the correction algorithm is designed. Finally, analyzing the FPGA ability for fix-point processing, the correction algorithm is optimized, and implemented on FPGA. Testing results indicate that the non-uniformity can be decreased from 8.27% to 0.51% for three TDICCDs camera's images with the proposed correction algorithm, proving that this correction algorithm is with high real-time performance, great engineering realization and satisfaction for the system requirements.
机译:在现场可编程门阵列(FPGA)硬件平台上提出和实现了非均匀性校正算法,以解决多时间延迟和集成充电耦合器(TDICCD)相机的像素响应非均匀性(PRNU)问题。介绍不均匀性,并且呈现了合成校正算法,其中在多通道中的单通道中使用两点校正方法,在多通道和多TDICCD之间的场景自适应校正方法中的增益平均校正方法。然后,设计了校正算法。最后,分析FPGA的修订点处理能力,优化校正算法,并在FPGA上实现。测试结果表明,使用所提出的校正算法的三个TDICCDS摄像机图像可以从8.27%降低到0.27%至0.51%,证明这种校正算法具有高实时性能,巨大的工程实现和对系统要求的满意度。

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