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Assessment of the Performance of Staring Infrared Imaging Array Based on Microscanning Modes

机译:基于微扫描模式的凝视红外成像阵列性能评估

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Staring infrared detector arrays, which sample a scene with pixels of finite size, generate images that are affected by aliasing and blurring caused by the sampling process. One potential method to reduce the effects of sampling is microscanning. In this paper, the sampling-averaging modulation transfer function at half the detector spatial cutoff frequency is introduced to be as a figure of merit to quantitatively assess microscanning image quality for selected cases of fill factor. Analytical results show that microscanning process can significantly reduce aliasing in the reconstructed image, and that the improvement of different modes of microscanning process to the reconstructed image quality is different, which is closely associated with fill factor. The microscan sampling and restoration imagery are also simulated with pixel interpolation method to qualitatively verify the reduction in aliasing with respect to typical microscanning mode (2 * 2, 3 * 3, 4 * 4 microscan) for the detector array of 100% and 50% fill factor respectively. And, the determining method of the optimum step number of microscanning needed is discussed for the staring imaging array with certain fill factor.
机译:凝视的红外检测器阵列使用有限大小的像素对场景进行采样,生成的图像会受到采样过程造成的混叠和模糊的影响。减少采样影响的一种潜在方法是微扫描。本文将检测器空间截止频率的一半处的采样平均调制传递函数作为品质因数来介绍,以定量评估所选填充因子情况下的微扫描图像质量。分析结果表明,微扫描过程可以显着减少重建图像中的混叠现象,并且不同模式的微扫描过程对重建图像质量的改善是不同的,这与填充因子密切相关。还使用像素插值方法模拟了微扫描采样和恢复图像,以定性验证100%和50%探测器阵列相对于典型微扫描模式(2 * 2、3 * 3、4 * 4微扫描)的混叠减少。填充因子。并且,讨论了具有一定填充率的凝视成像阵列所需的最佳微扫描步数的确定方法。

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