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Shack-Hartmann波前传感器质心探测的优化方法 被引量:3
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作者 赵菲菲 黄玮 +1 位作者 许伟才 杨添星 《红外与激光工程》 EI CSCD 北大核心 2014年第9期3005-3009,共5页
为提高Shack-Hartmann(S-H)波前传感器的光斑质心探测精度,在分析质心探测误差来源的基础上,提出基于模板匹配的探测窗口选取方法和基于单个光斑的自适应阈值选取方法,将这两种方法与加权质心算法相结合求取质心,提高了质心探测精度。... 为提高Shack-Hartmann(S-H)波前传感器的光斑质心探测精度,在分析质心探测误差来源的基础上,提出基于模板匹配的探测窗口选取方法和基于单个光斑的自适应阈值选取方法,将这两种方法与加权质心算法相结合求取质心,提高了质心探测精度。与固定阈值和传统质心算法相比较,当SNR大于3时,质心探测精度平均提高了约40%。将文中的方法应用于可见光波段的商品S-H波前传感器,实验表明:文中方法得到的质心偏离度由传统方法的0.83pixel的最大值减小至0.15pixel。该工作有重要的应用价值。 展开更多
关键词 质心探测 Shack-Hartmann波前传感器 阈值选取 窗口选取
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Time-domain denoising of time–frequency electromagnetic data 被引量:4
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作者 Zhang Bi-Ming Dai Shi-Kun +2 位作者 Jiang Qi-Yun Yan Jian Li Guang 《Applied Geophysics》 SCIE CSCD 2019年第3期378-393,398,共17页
Time–frequency electromagnetic data contain frequency and transient electromagnetic information and can be used to determine the apparent resistivity both in the frequency and time domains.The observation data contai... Time–frequency electromagnetic data contain frequency and transient electromagnetic information and can be used to determine the apparent resistivity both in the frequency and time domains.The observation data contains three types of noise:the harmonics interference at 50 Hz,high-frequency random noise,and low-frequency noise.We use frequency-domain bandstop filtering to remove the harmonics interference noise,segmentation and extension median filtering,and fitting of fixed extremes in empirical mode decomposition to remove the high-frequency and low-frequency noise,respectively;furthermore,we base the selection of median filtering window size on the variance and skewness coefficient of the data.We first remove the harmonics interference at 50 Hz,then the high-frequency noise,and finally the low-frequency noise.We test the proposed methodology by using theory and experiments,and we find that the three types of noises are removed,the phase and amplitude information of the signal are maintained,and high-quality waveforms are obtained in the time domain. 展开更多
关键词 ELECTROMAGNETIC DENOISING FILTERING BANDSTOP EMD
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