基于红外通信的AOD炉温度安全检测  

Temperature Safety Detection of AOD Furnace Based on Infrared Communication

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作  者:李林 LI Lin(Institute of Electrical and Mechanical Engineering,Jilin University of Architecure and Technology,Changchun Jilin 130114,China)

机构地区:[1]吉林建筑科技学院电气与机械工程学院,吉林长春130114

出  处:《信息与电脑》2023年第17期189-191,共3页Information & Computer

基  金:校级平台专项(项目编号:校科字[2020]043)。

摘  要:常规的氩氧脱碳(Argon Oxygen Decarburization,AOD)炉温度安全检测矩阵多为单向结构,温度检测的覆盖范围较小,导致温度检测方差增加,为此提出基于红外通信的AOD炉温度安全检测方法。首先,确定基础温度检测指标,设计多阶交叉温度检测矩阵;其次,构建红外通信AOD炉温度检测模型,采用红外标记识别完成温度检测;最后,进行实验分析。实验结果表明,该方法的温度检测方差被较好地控制在0.25以下,说明在红外通信技术的辅助下,AOD炉温度的检测精度更高,针对性更强。The temperature safety detection matrix of conventional Argon Oxygen Decarburization(AOD)furnace is mostly unidirectional,and the coverage range of temperature detection is small,resulting in an increase in temperature detection variance.Therefore,an AOD furnace temperature safety detection method based on infrared communication is proposed.Firstly,determine the basic temperature detection indicators and design a multi-level cross temperature detection matrix.Secondly,construct an infrared communication AOD furnace temperature detection model,and use infrared marker recognition to complete temperature detection.Finally,conduct experimental analysis.The experimental results show that the temperature detection variance of this method is well controlled below O.25,indicating that with the assistance of infrared communication technology,the detection accuracy of AOD furnace temperature is higher and more targeted.

关 键 词:红外通信 炉温度 安全检测 

分 类 号:TP391[自动化与计算机技术—计算机应用技术]

 

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