Bai Haicheng, Xie Zhi, Zhang Yuzhong, Hu Zhenwei
State Key Laboratory of Synthetical Automation for Process Industries, School of Information Science and Engineering, Northeastern University, Shenyang 110819, People's Republic of China.
Rev Sci Instrum. 2013 Jun;84(6):064904. doi: 10.1063/1.4808372.
This paper presents a radiometric high-temperature field measurement model based on a charge-coupled-device (CCD). According to the model, an intelligent CCD pyrometer with a digital signal processor as the core is developed and its non-uniformity correction algorithm for reducing the differences in accuracy between individual pixel sensors is established. By means of self-adaptive adjustment for the light-integration time, the dynamic range of the CCD is extended and its accuracy in low-temperature range is improved. The non-uniformity correction algorithm effectively reduces the accuracy differences between different pixel sensors. The performance of the system is evaluated through a blackbody furnace and an integrating sphere, the results of which show that the dynamic range of 400 K is obtained and the accuracy in low temperature range is increased by 7 times compared with the traditional method based on the fixed light-integration time. In addition, the differences of accuracy between the on-axis pixel and the most peripheral pixels are decreased from 19.1 K to 2.8 K. Therefore, this CCD pyrometer ensures that the measuring results of all pixels tend to be equal-accuracy distribution across the entire measuring ranges. This pyrometric system has been successfully applied to the temperature field measurements in continuous casting billets.
本文提出了一种基于电荷耦合器件(CCD)的辐射高温场测量模型。根据该模型,开发了一种以数字信号处理器为核心的智能CCD高温计,并建立了用于减少各个像素传感器精度差异的非均匀性校正算法。通过对光积分时间的自适应调整,扩展了CCD的动态范围,并提高了其在低温范围内的精度。非均匀性校正算法有效地减小了不同像素传感器之间的精度差异。通过黑体炉和积分球对系统性能进行了评估,结果表明,获得了400K的动态范围,与基于固定光积分时间的传统方法相比,低温范围内的精度提高了7倍。此外,轴上像素与最外围像素之间的精度差异从19.1K降至2.8K。因此,这种CCD高温计确保了所有像素的测量结果在整个测量范围内趋于等精度分布。该高温测量系统已成功应用于连铸坯的温度场测量。