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361.
视频GIS数据采集系统的设计与实现 总被引:4,自引:1,他引:3
视频GIS数据采集系统是将地理信息与视频影像实时自动集成,生成空间位置与视频影像相融合的超视频信息。在视频GIS数据模型原理的基础上提出了在视频采集的同时,按照一定的时间或空间间隔,记录地理坐标、速度和相对应的视频帧数,通过建立视频时间或视频帧与其地理位置坐标、速度的对照表,来实现视频数据与空间地理数据的有机集成。并详细的阐述了该系统的设计和实现。 相似文献
362.
Leandro Z.S. Campos Marcelo M.F. Saba Osmar Pinto Jr. Maurício G. Ballarotti 《Atmospheric Research》2009,91(2-4):416-424
This work analyses the waveshapes of continuing currents and parameters of M-components in positive cloud-to-ground (CG) flashes through high-speed GPS synchronized videos. The dataset is composed of only long continuing currents (with duration longer than 40 ms) and was selected from more than 800 flashes recorded in São José dos Campos (45.864°W, 23.215°S) and Uruguaiana (29.806°W, 57.005°S) in Southeast and South of Brazil, respectively, during 2003 to 2007 summers. The videos are compared with data obtained by the Brazilian Lightning Location System (BrasilDAT) in order to determine the polarity of each flash and select only positive cases. There are only two studies of waveshapes of continuing currents in the literature. One is based on direct current measurements of triggered lightning, in which four different types of waveshapes were observed; and the other is based on measurements of luminosity variations in high-speed videos of CG negative lightning, in which besides the four types above mentioned two additional types were observed. The present work is an extension of the latter, using the same method but now applied to obtain the waveshapes of positive CG lightning. As far as the authors know, this is the first report on M-components in positive continuing currents. We also have used the luminosity-versus-time graphs to observe their occurrence and measure some parameters (duration, elapsed time and time between two successive M-components), whose statistics are presented and compared in detail to the data for negative flashes. We have plotted a histogram of the M-components elapsed time over the total duration of the continuing current for positive flashes, which presented an exponential decay (correlation coefficient: 0.83), similar to what has been observed for negative flashes. 相似文献
363.
Review of oil spill remote sensing 总被引:2,自引:0,他引:2
Remote-sensing for oil spills is reviewed. The use of visible techniques is ubiquitous, however it gives only the same results as visual monitoring. Oil has no particular spectral features that would allow for identification among the many possible background interferences. Cameras are only useful to provide documentation. In daytime oil absorbs light and remits this as thermal energy at temperatures 3–8 K above ambient, this is detectable by infrared (IR) cameras. 相似文献