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Statistical Approach to Spectrogram Analysis for Radio-Frequency Interference Detection and Mitigation in an L-Band Microwave Radiometer

机译:L波段微波辐射计中射频干扰检测和减轻频谱图分析的统计方法

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For the elimination of radio-frequency interference (RFI) in a passive microwave radiometer, the threshold level is generally calculated from the mean value and standard deviation. However, a serious problem that can arise is an error in the retrieved brightness temperature from a higher threshold level owing to the presence of RFI. In this paper, we propose a method to detect and mitigate RFI contamination using the threshold level from statistical criteria based on a spectrogram technique. Mean and skewness spectrograms are created from a brightness temperature spectrogram by shifting the 2-D window to discriminate the form of the symmetric distribution as a natural thermal emission signal. From the remaining bins of the mean spectrogram eliminated by RFI-flagged bins in the skewness spectrogram for data captured at 0.1-s intervals, two distribution sides are identically created from the left side of the distribution by changing the standard position of the distribution. Simultaneously, kurtosis calculations from these bins for each symmetric distribution are repeatedly performed to determine the retrieved brightness temperature corresponding to the closest kurtosis value of three. The performance is evaluated using experimental data, and the maximum error and root-mean-square error (RMSE) in the retrieved brightness temperature are served to be less than approximately 3 K and 1.7 K, respectively, from a window with a size of 100 x 100 time-frequency bins according to the RFI levels and cases.
机译:为了消除无源微波辐射计中的射频干扰(RFI),通常根据平均值和标准偏差计算阈值水平。然而,由于RFI的存在,可以出现的严重问题是从更高的阈值水平的检索亮度温度的错误。在本文中,我们提出了一种使用基于谱图技术的统计标准来检测和缓解RFI污染的方法。通过转移二进制窗口以区分对称分布的形式作为天然热发射信号来从亮度温度谱图产生平均值和偏斜谱图。从尺寸的尺寸频谱图中的剩余频率通过RFI标记的频谱图中的用于以0.1-S间隔捕获的数据,通过改变分布的标准位置来相同地从分布的左侧形成两个分配侧。同时,重复进行来自这些箱的峰值计算,以确定对应于三个最近的峰值值的检索亮度温度。使用实验数据评估性能,并且从尺寸为100的窗口,检索到的亮度温度中的最大误差和根均方误差(RMSE)分别为小于约3k和1.7 k X 100根据RFI水平和情况的时间频率箱。

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