Suppr超能文献

基于发射率模型约束的多光谱辐射算法用于真实温度测量

[Multispectral Radiation Algorithm Based on Emissivity Model Constraints for True Temperature Measurement].

作者信息

Liang Mei, Sun Xiao-gang, Luan Mei-sheng

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2015 Oct;35(10):2675-9.

Abstract

Temperature measurement is one of the important factors for ensuring product quality, reducing production cost and ensuring experiment safety in industrial manufacture and scientific experiment. Radiation thermometry is the main method for non-contact temperature measurement. The second measurement (SM) method is one of the common methods in the multispectral radiation thermometry. However, the SM method cannot be applied to on-line data processing. To solve the problems, a rapid inversion method for multispectral radiation true temperature measurement is proposed and constraint conditions of emissivity model are introduced based on the multispectral brightness temperature model. For non-blackbody, it can be drawn that emissivity is an increasing function in the interval if the brightness temperature is an increasing function or a constant function in a range and emissivity satisfies an inequality of emissivity and wavelength in that interval if the brightness temperature is a decreasing function in a range, according to the relationship of brightness temperatures at different wavelengths. The construction of emissivity assumption values is reduced from multiclass to one class and avoiding the unnecessary emissivity construction with emissivity model constraint conditions on the basis of brightness temperature information. Simulation experiments and comparisons for two different temperature points are carried out based on five measured targets with five representative variation trends of real emissivity. decreasing monotonically, increasing monotonically, first decreasing with wavelength and then increasing, first increasing and then decreasing and fluctuating with wavelength randomly. The simulation results show that compared with the SM method, for the same target under the same initial temperature and emissivity search range, the processing speed of the proposed algorithm is increased by 19.16%-43.45% with the same precision and the same calculation results.

摘要

温度测量是工业制造和科学实验中确保产品质量、降低生产成本以及保证实验安全的重要因素之一。辐射测温法是进行非接触式温度测量的主要方法。二次测量(SM)法是多光谱辐射测温法中的常用方法之一。然而,SM法无法应用于在线数据处理。为了解决这些问题,基于多光谱亮度温度模型,提出了一种多光谱辐射真实温度测量的快速反演方法,并引入了发射率模型的约束条件。对于非黑体,根据不同波长下亮度温度的关系,如果亮度温度在某一范围内是增函数或常数函数,则在该区间内发射率是增函数;如果亮度温度在某一范围内是减函数,则在该区间内发射率满足发射率与波长的不等式。基于亮度温度信息,利用发射率模型约束条件,将发射率假设值的构建从多类减少到一类,避免了不必要的发射率构建。基于五个具有真实发射率五种代表性变化趋势(单调递减、单调递增、先随波长减小后增大、先增大后减小以及随波长随机波动)的测量目标,对两个不同温度点进行了模拟实验和比较。模拟结果表明,与SM法相比,对于相同目标,在相同初始温度和发射率搜索范围下,所提算法在精度相同且计算结果相同的情况下,处理速度提高了19.16% - 43.45%。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验