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Noise Power Spectrum Measurements in Digital Imaging With Gain Nonuniformity Correction

机译:具有增益不均匀校正的数字成像中的噪声功率谱测量

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The noise power spectrum (NPS) of an image sensor provides the spectral noise properties needed to evaluate sensor performance. Hence, measuring an accurate NPS is important. However, the fixed pattern noise from the sensor’s nonuniform gain inflates the NPS, which is measured from images acquired by the sensor. Detrending the low-frequency fixed pattern is traditionally used to accurately measure NPS. However, detrending methods cannot remove high-frequency fixed patterns. In order to efficiently correct the fixed pattern noise, a gain-correction technique based on the gain map can be used. The gain map is generated using the average of uniformly illuminated images without any objects. Increasing the number of images for averaging can reduce the remaining photon noise in the gain map and yield accurate NPS values. However, for practical finite , the photon noise also significantly inflates NPS. In this paper, a nonuniform-gain image formation model is proposed and the performance of the gain correction is theoretically analyzed in terms of the signal-to-noise ratio (SNR). It is shown that the SNR is . An NPS measurement algorithm based on the gain map is then proposed for any given . Under a weak nonuniform gain assumption, another measurement algorithm based on the image difference is also proposed. For real radiography image detectors, the proposed algorithms are compared with traditional detrending and subtraction methods, and it is shown that as few as two images ( ) can provide an accurate NPS because of the compensation constant .
机译:图像传感器的噪声功率谱(NPS)提供了评估传感器性能所需的光谱噪声特性。因此,测量准确的NPS很重要。但是,来自传感器非均匀增益的固定模式噪声会使NPS膨胀,NPS是根据传感器获取的图像进行测量的。低频固定模式的去趋势传统上用于精确测量NPS。但是,去趋势方法不能去除高频固定图案。为了有效地校正固定图案噪声,可以使用基于增益图的增益校正技术。增益图是使用没有任何物体的均匀照明图像的平均值生成的。增加用于平均的图像数量可以减少增益图中剩余的光子噪声并产生准确的NPS值。但是,对于实际有限,光子噪声也会显着增大NPS。本文提出了一种非均匀增益图像形成模型,并根据信噪比(SNR)从理论上分析了增益校正的性能。结果表明,信噪比为。然后提出了基于增益图的NPS测量算法。在弱非均匀增益假设下,还提出了另一种基于图像差异的测量算法。对于实际的放射线图像检测器,将所提出的算法与传统的去趋势和减法方法进行了比较,结果表明,由于补偿常数的存在,少至两张图像即可提供准确的NPS。

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