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Digital close-range photogrammetric application to small-scale physical simulation experiment
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作者 LI Chun-yi1, CUI Xi-min2, YU Yi-ju3 1. School of Surveying and Landing Information Engineering, Henan Polytechnic University, Jiaozuo 454003, China 2. College of Geoscience and Surveying Engineering, China University of Mining and Technology, Beijing 100083, China 3. Surveying and Mapping Press, Beijing 100045, China 《中国有色金属学会会刊:英文版》 CSCD 2011年第S3期681-685,共5页
In order to research the possibility of digital close-range photogrammetric surveying in small scale physical simulation experiment, physical model coinciding with engineering practice was constructed based on similar... In order to research the possibility of digital close-range photogrammetric surveying in small scale physical simulation experiment, physical model coinciding with engineering practice was constructed based on similar theory. The datum processing method and surveying precision of digital close-range photogrammetric were analyzed. And the function relationship between overburden subsidence factor qr and the ratio z/H of stratum horizon z and mining depth H was researched. The results show that surveying points position mean error along horizontal direction is ±0.131 mm and vertical direction is ±0.192 mm. Therefore, multi-taking station cross direction digital close-range photogrammetric can completely satisfy the precision need of physical simulation experiment. And the empirical formula can be utilized to represent evolution law of stratum subsidence factor. 展开更多
关键词 close-range photogrammetric physical simulation light-rays adjustment SURVEYING PRECISION SUBSIDENCE FACTOR
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基于面阵CCD的大视场在线检测系统研究 被引量:6
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作者 金熠 翟超 +2 位作者 邢晓正 滕勇 胡红专 《计量学报》 EI CSCD 北大核心 2007年第4期306-310,共5页
设计了一套非接触在线检测系统,该系统基于近景摄影测量原理,与传统测量方法相比,它可以对大视场内多目标同时进行检测。对CCD像机进行精密标定,利用光线束平差原理求解空间坐标,采用亚像素技术处理图像以及同名像点匹配等技术的运用,... 设计了一套非接触在线检测系统,该系统基于近景摄影测量原理,与传统测量方法相比,它可以对大视场内多目标同时进行检测。对CCD像机进行精密标定,利用光线束平差原理求解空间坐标,采用亚像素技术处理图像以及同名像点匹配等技术的运用,大大提高了检测精度。系统单幅拍摄线视场为141 mm,最终可以检测500mm×500 mm范围内的目标,空间坐标检测精度优于0.03 mm。该系统可应用于工业现场检测等众多相关领域。 展开更多
关键词 计量学 近景摄影测量 面阵CCD 标定 光线束平差 亚像素技术
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