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Design and implementation of high-speed multiwavelength pyrometry measurement system based on CMOS image sensor
WangBo; BaiYonglin; LiuBaiyu; BaiXiaohong; YangWenzheng; QinJunjun; GouYongsheng; Wang Bo
作者部门瞬态光学国家重点实验室
2011
发表期刊Chinese Optics Letters
ISSN1671-7694
卷号9期号:SUPPL 1页码:S10304
产权排序1
摘要The detonation temperature is measured both theoretically and experimentally by means of a complementary metal oxide semiconductors (CMOS) image sensor. An experimental system of multiwavelength temperature measurement based on CMOS image sensing technology is designed and realized. The instant spectral information of each moment is captured by row with the CMOS image sensor, depending on the unique characteristic of its rolling shutter. With the use of multiwavelength temperature measurement theory and by fitting spectrum emissivity through the regressive least square method, the color temperature of the detonation whose temperature is variable can be obtained continuously. The system is calibrated by measuring the standard spectrum of the laser. In our system, four time temperatures are measured within 10-μs detonation. Results show that the system has a higher measuring accuracy and speed, and can be applied in high-speed spectral information collection and storage during the detonation.
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收录类别EI
语种英语
项目资助者Research Institute of China Ordinance Industry Co., Ltd
文献类型期刊论文
条目标识符http://ir.opt.ac.cn/handle/181661/19694
专题瞬态光学研究室
通讯作者Wang Bo
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GB/T 7714
WangBo,BaiYonglin,LiuBaiyu,et al. Design and implementation of high-speed multiwavelength pyrometry measurement system based on CMOS image sensor[J]. Chinese Optics Letters,2011,9(SUPPL 1):S10304.
APA WangBo.,BaiYonglin.,LiuBaiyu.,BaiXiaohong.,YangWenzheng.,...&Wang Bo.(2011).Design and implementation of high-speed multiwavelength pyrometry measurement system based on CMOS image sensor.Chinese Optics Letters,9(SUPPL 1),S10304.
MLA WangBo,et al."Design and implementation of high-speed multiwavelength pyrometry measurement system based on CMOS image sensor".Chinese Optics Letters 9.SUPPL 1(2011):S10304.
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