尹中会,李春.CCD 甄别成形过程中玻璃包装制品的衰减照明光方法[J].包装工程,2014,35(5):97-101. YIN Zhong-hui,LI Chun.Method of Decreasing Background Light Intensity in Discriminating Glass Packaging Product in Forming Process by CCD[J].Packaging Engineering,2014,35(5):97-101. |
CCD 甄别成形过程中玻璃包装制品的衰减照明光方法 |
Method of Decreasing Background Light Intensity in Discriminating Glass Packaging Product in Forming Process by CCD |
投稿时间:2013-10-07 修订日期:2014-03-01 |
DOI: |
中文关键词: 玻璃包装制品 CCD 甄别 衰减系数 灰度差 |
英文关键词: glass packaging product CCD discrimination attenuation coefficient gray difference |
基金项目:上海市重点学科建设资助项目( J50501) |
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中文摘要: |
目的 为了满足 CCD 对成形过程中玻璃包装制品的在线边界甄别条件,进而对其进行在线尺寸测量。 方法 采用高温目标辐射光谱功率分布理论和 Matlab 数值积分方法,研究不同背景照明系数条件下 CCD 对高温玻璃包装制品和其周围背景的辐照响应。 结果 导出了背景照明系数与 CCD图像中高温玻璃包装制品和其周围背景的灰度差之间的函数关系和曲线,随着照明光衰减系数值的不断减小,高温玻璃包装制品和其周围背景的灰度差不断增大,当灰度差为 0 时存在临界值。 以阳光照明为例,导出了其临界衰减系数与高温玻璃温度之间的关系,高温玻璃温度为 900 K 时的临界值为1 . 6351 X10-8。 结论 背景照明系数必须小于其临界值,才能满足其灰度差大于 0 的在线边界甄别条件,且背景照明系数值越小甄别效果越好,进而提出采用衰减照明光的方法来实现成形过程中玻璃包装制品的 CCD 甄别。 |
英文摘要: |
Objective To satisfy the discrimination condition of the glass packaging product in forming process by CCD and provide basis for its size measurement. Methods The monochrome irradiation response of the CCD to the glass packaging product and its surrounding scenery in different attenuation coefficient of the background light by the high temperature target radiation spectral power distribution theory and the Matlab numerical integration were studied. Results The functional relationship and curves between the gray difference between the high temperature glass packaging product and its surrounding scenery in CCD image and the attenuation coefficient of the background light were found. The gray difference increased as the attenuation coefficient decreased continuously and the critical value of the attenuation coefficient existed when the gray difference equaled zero. With the sunlight as an example, the relationship between the critical attenuation coefficient and the glass temperature was obtained and the critical value of the attenuation coefficient was 1. 6351 X10-8 when the glass temperature was 900 K. Conclusion The discrimination condition of the gray difference greater than zero could be satisfied only when the attenuation coefficient of the background light was smaller than its critical value and the smaller the attenuation coefficient was, the better the discriminating effectiveness. It was presented that the method of decreasing background light intensity could be used to realize the discrimination of the glass packaging product in forming process by CCD. |
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