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Extraction of low contrast optical spot in cloudy weather and influence on atmospheric coherence length data

机译:多云天气中低对比度光学点的提取及对大气相干长度数据的影响

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The atmospheric coherence length which reflects the intensity of atmospheric turbulence is a very important parameter of laser atmospheric propagation and adaptive optics. It has been used as the modern definition of atmospheric seeing in astronomical observations. Day-night atmospheric coherence length monitor is a conventional instrument which can measure the atmospheric coherence length. It uses the two aperture differential imaging motion method (DIMM) to measure the atmospheric coherence length r_0 based on continuous observation of stars. When there are clouds in the sky especially for cloudy weather, the starlight are often obscured by clouds and the SNR of image is very low for only faint starlight received by Day-night atmospheric coherence length monitor. This would cause unacceptable measurement error. Therefore, there are fewer atmospheric coherent length data in the cloudy weather. The paper analyzes the measurement errors and tracking errors under the low SNR condition. Based on the experimental data, the characteristics of night cloudy sky background are analyzed. According to the fact that the sky background obeys Gauss distribution, we present an improved method of Gaussian spot extraction fitting method to extract the optical spot region. The processing method includes the following steps: first, the mean intensity of the image is calculated by Gauss fitting, then, divide the image into the background and the suspected target with the threshold of the half width of the Gauss distribution above the mean intensity. The largest area of the suspected target will be taken as the optical spot area. After that, a sliding window of 5 multiply 5 scale is used to scan the optical spot area to carry out gauss fitting for the center pixel x_(ij) at the angle of 0degree,45degree,90degree and 135degree. A comparison is taken between x_(ij) and the average values of the four fitting results, if the difference exceeds the threshold value, the pixel x_(ij) will be taken as the noise pixel, and the mean value of the fitting result is used to replace the pixel intensity. In order to verify the accuracy of the method, the turbulence phase screen has been used in numerical simulation. The result shows that this barycenter extraction method can accurately extract the centroid of optical spot under low contrast situation. Even when the SNR is 1.25db, the measurement error of r_0 is still less than 10%. We believe that this method may be useful in improving the adaptability of Day-night atmospheric coherence length monitor to more kinds of weather.
机译:反映大气湍流强度的大气相干长度是激光大气传播和自适应光学器件的一个非常重要的参数。它已被用作天文观测中大气的现代定义。昼夜大气相干长度显示器是一种可以测量大气相干长度的常规仪器。它使用两个孔径差分成像运动方法(DIMM)来根据恒星的连续观察测量大气相干长度R_0。当天空中有云特别是多云的天气时,星光通常被云层遮挡,并且只有日夜大气相干长度监视器接收的微小星光非常低。这会导致无法接受的测量误差。因此,多云天气中的大气相干长度数据较少。本文在低SNR条件下分析了测量误差和跟踪误差。基于实验数据,分析了夜间阴天背景的特点。根据天空背景Obeys高斯分布的事实,我们提出了一种改进的高斯点提取拟合方法来提取光学点区域。处理方法包括以下步骤:首先,通过高斯拟合计算图像的平均强度,然后将图像划分为背景和疑似目标,其具有高于平均强度的高斯分布的半宽度的阈值。疑似目标的最大面积将被视为光学点区域。之后,使用5乘以5比例的滑动窗口来扫描光学光斑区域,以在0degree,45degree,90degree和135degree的角度下对中心像素X_(IJ)进行高斯拟合。在X_(IJ)和四个拟合结果的平均值之间进行比较,如果差值超过阈值,则像素X_(IJ)将被视为噪声像素,并且拟合结果的平均值是用于更换像素强度。为了验证该方法的准确性,湍流相位屏幕已用于数值模拟。结果表明,这种重心提取方法可以在低对比度情况下精确提取光学点的质心。即使SNR为1.25dB,R_0的测量误差仍然小于10%。我们认为,这种方法可用于提高日夜大气相干长度监测到更多种类天气的适应性。

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