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Increasing the range accuracy of three-dimensional ghost imaging ladar using optimum slicing number method

Increasing the range accuracy of three-dimensional ghost imaging ladar using optimum slicing number method
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摘要 The range accuracy of three-dimensional(3D) ghost imaging is derived. Based on the derived range accuracy equation, the relationship between the slicing number and the range accuracy is analyzed and an optimum slicing number(OSN)is determined. According to the OSN, an improved 3D ghost imaging algorithm is proposed to increase the range accuracy. Experimental results indicate that the slicing number can affect the range accuracy significantly and the highest range accuracy can be achieved if the 3D ghost imaging system works with OSN. The range accuracy of three-dimensional(3D) ghost imaging is derived. Based on the derived range accuracy equation, the relationship between the slicing number and the range accuracy is analyzed and an optimum slicing number(OSN)is determined. According to the OSN, an improved 3D ghost imaging algorithm is proposed to increase the range accuracy. Experimental results indicate that the slicing number can affect the range accuracy significantly and the highest range accuracy can be achieved if the 3D ghost imaging system works with OSN.
机构地区 Department of Physics
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第12期319-324,共6页 中国物理B(英文版)
基金 Project supported by the Young Scientist Fund of the National Natural Science Foundation of China(Grant No.61108072)
关键词 ghost imaging range accuracy optimum slicing number ghost imaging,range accuracy,optimum slicing number
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参考文献20

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