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首页> 外文期刊>Journal of astornomical telescopes, instruments, and systems >Subpixel real-time jitter detection algorithm and implementation for polarimetric and helioseismic imager
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Subpixel real-time jitter detection algorithm and implementation for polarimetric and helioseismic imager

机译:亚像素抖动实时检测算法实现偏振和helioseismic成像仪

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摘要

The polarimetric and helioseismic imager instrument for the Solar Orbiter mission from the European Space Agency requires a high stability while capturing images, specially for the polarimetric ones. For this reason, an image stabilization system has been included in the instrument. It uses global motion estimation techniques to estimate the jitter in real time with subpixel resolution. Due to instrument requirements, the algorithm has to be implemented in a Xilinx Virtex-4QV field programmable gate array. The algorithm includes a 2-D paraboloid interpolation algorithm based on 2-D bisection. We describe the algorithm implementation and the tests that have been made to verify its performance. The jitter estimation has a mean error of 1/25 pixel of the correlation tracking camera. The paraboloid interpolation algorithm provides also better results in terms of resources and time required for the calculation (at least a 20% improvement in both cases) than those based on direct calculation. (C) 2019 Society of Photo-Optical Instrumentation Engineers (SPIE).
机译:偏振和helioseismic成像仪太阳能卫星任务的工具欧洲太空总署要求稳定性高在捕捉图像,特别的偏振的。已经包含在稳定系统乐器。技术来实时估计抖动与亚像素分辨率。要求,要实现的算法在Xilinx该现场可编程门数组中。基于二维插值算法对分。我们描述了算法实现和测试,来验证它的性能。1/25像素相关性的误差跟踪相机。方面也提供了更好的结果所需的资源和时间的计算(至少在两种情况下提高了20%)那些基于直接计算。学会Photo-Optical仪器工程师(学报)。

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