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An Embedded Processor for Real-Time Atmoshperic Compensation

机译:嵌入式处理器,用于实时大气补偿

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摘要

Imaging over long distances is crucial to a number of defense and security applications, such as homeland security and launch tracking. However, the image quality obtained from current long-range optical systems can be severely degraded by the turbulent atmosphere in the path between the region under observation and the imager. While this obscured image information can be recovered using post-processing techniques, the computational complexity of such approaches has prohibited deployment in real-time scenarios. To overcome this limitation, we have coupled a state-of-the-art atmospheric compensation algorithm, the average-bispectrum speckle method, with a powerful FPGA-based embedded processing board. The end result is a light-weight, lower-power image processing system that improves the quality of long-range imagery in real-time, and uses modular video I/O to provide a flexible interface to most common digital and analog video transport methods. By leveraging the custom, reconfigurable nature of the FPGA, a 20x speed increase over a modern desktop PC was achieved in a form-factor that is compact, low-power, and field-deployable.
机译:长途距离的成像对于许多防御和安全应用以及国土安全和发布跟踪等至关重要。然而,从当前远程光学系统获得的图像质量可以通过观察和成像器的区域之间的路径中的湍流气氛严重降低。虽然可以使用后处理技术恢复这种模糊的图像信息,但是这种方法的计算复杂性禁止在实时方案中进行部署。为了克服这种限制,我们已耦合的状态的最先进的大气补偿算法,平均-双谱散斑的方法,具有强大的基于FPGA的嵌入式处理板。最终结果是轻量级,低功率图像处理系统,可以实时提高远程图像的质量,并使用模块化视频I / O为最常见的数字和模拟视频传输方法提供灵活的接口。通过利用FPGA的自定义,可重新配置性质,在现代台式PC上实现了20倍的速度增加,以紧凑,低功耗和现场部署的形式因素实现。

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