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作 者:张卫正 王越峰 饶智[2] 唐梦珂 张伟伟 李萌 冯永新 ZHANG Weizheng;WANG Yuefeng;RAO Zhi;TANG Mengke;ZHANG Weiwei;LI Meng;FENG Yongxin(College of Computer Science and Technology,Zhengzhou University of Light Industry,No.136,Kexue Avenue,High-tech District,Zhengzhou 450001,China;Hongyun Honghe Tobacco(Group)Co.Ltd.,No.367,Hongjin Road,Wuhua District,Kunming 650231,China;College of Tobacco Science and Engineering,Zhengzhou University of Light Industry,No.136,Kexue Avenue,High-tech District,Zhengzhou 450001,China;China Tobacco Hebei Industrial Co.Ltd.,No.1,Weiming South Street,Qiaoxi District,Shijiazhuang 050000,China)
机构地区:[1]郑州轻工业大学计算机科学与技术学院,郑州450001 [2]红云红河烟草(集团)有限责任公司,昆明650032 [3]郑州轻工业大学烟草科学与工程学院,郑州450001 [4]河北中烟工业有限责任公司,石家庄050000
出 处:《中国烟草学报》2024年第3期1-10,共10页Acta Tabacaria Sinica
基 金:河南省科技攻关项目“基于协同代理和流形学习的大规模多模态多目标优化方法研究”(No.222102210037);河南省高等教育教学改革研究与实践重点项目(2021SJGLX189)。
摘 要:【目的】生成卷烟燃烧锥的完整三维形态模型,提取燃烧锥的高度、表面积、体积和偏离角等参数,为建立卷烟燃烧性能评价体系提供支撑。【方法】将带有燃烧锥的卷烟放置在高精度旋转平台,通过智能手机采集燃烧锥的视频并转换为图像,通过图像分割及边缘提取获取燃烧锥的边缘坐标,采用线框模型建立燃烧锥的三维形态,计算燃烧锥的高度、表面积、体积和偏离角,分析偏离角的分布特点。【结果】利用该方法建立的卷烟燃烧锥三维模型曲面连续平滑,实现了燃烧锥的三维形态的精准测定,优于常规的测定方法。[Objective]This study aims to generate a complete three-dimensional morphological model of the cigarette combustion cone and extract parameters such as height,surface area,deviation angle,volume of the combustion cone,thereby providing support for establishing a cigarette combustion performance evaluation system.[Methods]A cigarette with a combustion cone is placed on a high-precision rotating platform.A video of the combustion cone is collected with a smartphone and converted into images.Edge coordinates of the combustion cone are obtained through image segmentation and edge extraction.A wireframe model is used to establish the three-dimensional shape of the combustion cone,and the height,surface area,volume,and deviation angle are calculated to analyze the distribution characteristics of the deviation angle.[Results]The three-dimensional model of the cigarette combustion cone established by this method has a continuous and smooth surface,which realizes the accurate measurement of the three-dimensional shape of the combustion cone and is superior to conventional measurement methods.
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