Xie Zhi, Bai Haicheng
State Key Laboratory of Synthetical Automation for Process Industries, School of Information Science & Engineering, Northeastern University, Shenyang 110819, People's Republic of China.
Rev Sci Instrum. 2014 Feb;85(2):024903. doi: 10.1063/1.4866679.
This paper develops an imaging based three-color pyrometer for the monitoring of temperature distribution in a continuous casting billet. A novel optical device, together with an embedded electronic system, is designed to sequentially collect a dark image and three thermal images with specified wavelengths on a same monochromatic charge-coupled-device (CCD). The three thermal images provide the basis for the determination of target temperature, while the dark image is used to online eliminate the dark noise of CCD with a differential method. This image pyrometer is not only independent of target emissivity but also overcomes the dissimilarity of measuring accuracy between the micro-sensors of CCD resulted from the non-uniformity of pixels' intensity response and the vignetting of optical system. Furthermore, a precise two-color temperature field measuring model on the CCD pyrometer is established, based on which a self-adaptive light-integration mechanism is presented. Compared with the traditional fixed light-integration method, the measuring range of the pyrometer is greatly extended and its sensitivity in low temperature segment is improved. The test results in a steel factory demonstrate that the pyrometer is capable of meeting the requirement of surface temperature measurements about casting billets. Reliability and accuracy of measurement results are also discussed herein.
本文开发了一种基于成像的三色高温计,用于监测连铸坯中的温度分布。设计了一种新颖的光学装置以及嵌入式电子系统,以便在同一单色电荷耦合器件(CCD)上依次采集一幅暗图像和三幅特定波长的热图像。这三幅热图像为确定目标温度提供了依据,而暗图像则用于通过差分法在线消除CCD的暗噪声。这种图像高温计不仅与目标发射率无关,而且克服了由于像素强度响应不均匀和光学系统渐晕导致的CCD微传感器测量精度的差异。此外,在CCD高温计上建立了精确的双色温度场测量模型,并在此基础上提出了一种自适应光积分机制。与传统的固定光积分方法相比,高温计的测量范围大大扩展,其在低温段的灵敏度也得到提高。钢铁厂的测试结果表明,该高温计能够满足铸坯表面温度测量的要求。本文还讨论了测量结果的可靠性和准确性。