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视频图像分辨率的特点和概念
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作者 崔宁 《现代电视技术》 2002年第2期51-52,共2页
电视图像清晰度是图像媒体(如电视)复制一种事物的精细程度。人们早期对电视的研制产生了两大主要的SDTV扫描模式,即625/50制式和525/
关键词 视频图像 空间分辨率 瞬时分辨率 电视图像清晰度 ATSC标准
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K(5P)与H_2的反应碰撞和电子-振动能量转移
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作者 李佳灵 张文军 +3 位作者 封丽 刘静 戴康 沈异凡 《原子与分子物理学报》 CAS CSCD 北大核心 2014年第4期589-594,共6页
K(5P)与H2反应生成KH(v″=0-3)振动态,测量了各振动态的转动分布,转动玻尔兹曼温度为455K,而振动温度为1604K,这个接近池温的转动温度和很高的振动温度是共线碰撞机制的有力证据.利用高分辨率瞬时吸收技术得到各振动能级上转动态的布居... K(5P)与H2反应生成KH(v″=0-3)振动态,测量了各振动态的转动分布,转动玻尔兹曼温度为455K,而振动温度为1604K,这个接近池温的转动温度和很高的振动温度是共线碰撞机制的有力证据.利用高分辨率瞬时吸收技术得到各振动能级上转动态的布居分布,从而得到反应碰撞转移速率系数,对于v″=0、1、2、3,分别为(3.45±0.86)×10-13、(1.35±0.34)×10-13、(6.28±1.57)×10-14和(2.35±0.59)×10-14cm3s-1.同时研究了K(5P)-H2的电子-振动能量转移,利用相干反斯托克斯拉曼散射(CARS)探测H2的振动态分布.扫描CARS谱发现v=1、2、3上有布居.由CARS峰值得到H2(0,1)、(1,1)、(2,1)、(3,1)和(3,3)布居之比.H2(0,1)布居由450K的转动分布得到,因而得到(1,1)、(2,1)、(3,1)和(3,3)态的布居,从而获得K(5P)-H2(1,1)、(2,1)、(3,1)和(3,3)的电子-振转速率系数分别是(1.1±0.3)×10-13、(9.3±2.5)×10-14、(4.2±1.1)×10-14和(3.8±1.0)×10-14cm3s-1. 展开更多
关键词 反应机制 电子-振动能量转移 分辨率瞬时吸收 玻尔兹曼分布 K(5P)+H2
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Properties of an improved Gabor wavelet transform and its applications to seismic signal processing and interpretation
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作者 Ji Zhan-Huai Yan Sheng-Gang 《Applied Geophysics》 SCIE CSCD 2017年第4期529-542,621,共15页
This paper presents an analytical study of the complete transform of improved Gabor wavelets (IGWs), and discusses its application to the processing and interpretation of seismic signals. The complete Gabor wavelet ... This paper presents an analytical study of the complete transform of improved Gabor wavelets (IGWs), and discusses its application to the processing and interpretation of seismic signals. The complete Gabor wavelet transform has the following properties. First, unlike the conventional transform, the improved Gabor wavelet transform (IGWT) maps time domain signals to the time-frequency domain instead of the time-scale domain. Second, the IGW's dominant frequency is fixed, so the transform can perform signal frequency division, where the dominant frequency components of the extracted sub-band signal carry essentially the same information as the corresponding components of the original signal, and the sub- band signal bandwidth can be regulated effectively by the transform's resolution factor. Third, a time-frequency filter consisting of an IGWT and its inverse transform can accurately locate target areas in the time-frequency field and perform filtering in a given time-frequency range. The complete IGW transform's properties are investigated using simulation experiments and test cases, showing positive results for seismic signal processing and interpretation, such as enhancing seismic signal resolution, permitting signal frequency division, and allowing small faults to be identified. 展开更多
关键词 Seismic signal inverse transform Gabor wavelet transform FAULTS RESOLUTIONS instantaneous phase
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