基于FPGA的InGaAs短波红外成像系统的研究与实验

L. Ren, Chaobo Min, Jiannin Sun, Yan Gu, Feng Yang, Bo Zhu, J. Pan, Yiliang Guo
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引用次数: 0

摘要

介绍了InGaAs短波红外成像系统的设计和成像特性实验。通过采用InGaAs焦平面阵列,研究了InGaAs短波红外成像系统的实时图像处理结构。研究了基于FPGA的成像系统的硬件电路和图像处理软件。InGaAs短波红外成像系统由短波红外透镜、InGaAs焦平面阵列、温控模块、电源模块、模数转换模块、数模转换模块、FPGA图像处理模块和光机械结构组成。InGaAs短波红外成像系统的主锁定频率为30MHz。InGaAs短波红外成像系统的输出方式为PAL模拟信号。成像系统的功耗为2.6W。InGaAs短波红外成像系统中的实时信号处理包括非均匀校正算法、坏像素替换算法和直方图均衡算法。基于InGaAs短波红外成像系统,对不同条件下的不同目标进行了短波红外成像特性测试。在多雾天气下,测试了雾霾和雾的穿透性。InGaAs短波红外成像系统可用于在雾霾和大雾天气中观察人类、船只、建筑和山脉。InGaAs短波红外成像系统结构合理,性能稳定。InGaAs短波红外成像系统的研究对促进夜视技术的发展具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research and experiment of InGaAs shortwave infrared imaging system based on FPGA
The design and imaging characteristic experiment of InGaAs shortwave infrared imaging system are introduced. Through the adoption of InGaAs focal plane array, the real time image process structure of InGaAs shortwave infrared imaging system is researched. The hardware circuit and image process software of the imaging system based on FPGA are researched. The InGaAs shortwave infrared imaging system is composed of shortwave infrared lens, InGaAs focal plane array, temperature controller module, power supply module, analog-to-digital converter module, digital-to-analog converter module, FPGA image processing module and optical-mechanical structure. The main lock frequency of InGaAs shortwave infrared imaging system is 30MHz. The output mode of the InGaAs shortwave infrared imaging system is PAL analog signal. The power dissipation of the imaging system is 2.6W. The real time signal process in InGaAs shortwave infrared imaging system includes non-uniformly correction algorithm, bad pixel replacement algorithm, and histogram equalization algorithm. Based on the InGaAs shortwave infrared imaging system, the imaging characteristic test of shortwave infrared is carried out for different targets in different conditions. In the foggy weather, the haze and fog penetration are tested. The InGaAs shortwave infrared imaging system could be used for observing humans, boats, architecture, and mountains in the haze and foggy weather. The configuration and performance of InGaAs shortwave infrared imaging system are respectively logical and steady. The research on the InGaAs shortwave infrared imaging system is worthwhile for improving the development of night vision technology.
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