首页> 外文会议>International symposium on optoelectronic technology and application >Infrared identification of internal overheating components inside an electric control cabinet by inverse heat transfer problem
【24h】

Infrared identification of internal overheating components inside an electric control cabinet by inverse heat transfer problem

机译:通过反向传热问题红外识别电气控制柜内部的内部过热组件

获取原文

摘要

The components overheating inside an object, such as inside an electric control cabinet, a moving object, and a running machine, can easily lead to equipment failure or fire accident. The infrared remote sensing method is used to inspect the surface temperature of object to identify the overheating components inside the object in recent years. It has important practical application of using infrared thermal imaging surface temperature measurement to identify the internal overheating elements inside an electric control cabinet. In this paper, through the establishment of test bench of electric control cabinet, the experimental study was conducted on the inverse identification technology of internal overheating components inside an electric control cabinet using infrared thermal imaging. The heat transfer model of electric control cabinet was built, and the temperature distribution of electric control cabinet with internal overheating element is simulated using the finite volume method (FVM). The outer surface temperature of electric control cabinet was measured using the infrared thermal imager. Combining the computer image processing technology and infrared temperature measurement, the surface temperature distribution of electric control cabinet was extracted, and using the identification algorithm of inverse heat transfer problem (IHTP) the position and temperature of internal overheating element were identified. The results obtained show that for single element overheating inside the electric control cabinet the identifying errors of the temperature and position were 2.11% and 5.32%. For multiple elements overheating inside the electric control cabinet the identifying errors of the temperature and positions were 3.28% and 15.63%. The feasibility and effectiveness of the method of IHTP and the correctness of identification algorithm of FVM were validated.
机译:诸如电气控制柜,移动的物体和运行中的机器之类的物体内部的过热部件很容易导致设备故障或火灾。红外遥感方法用于检查物体的表面温度,以识别近年来物体内部的过热成分。使用红外热成像表面温度测量来确定电气控制柜内部的内部过热元件具有重要的实际应用。本文通过建立电控柜试验台,对采用红外热成像技术的电控柜内部过热元件的逆辨识技术进行了实验研究。建立了电控柜的传热模型,并采用有限体积法(FVM)模拟了带有内部过热元件的电控柜的温度分布。使用红外热像仪测量电气控制柜的外表面温度。结合计算机图像处理技术和红外测温技术,提取了电控柜的表面温度分布,并利用逆传热问题识别算法(IHTP)确定了内部过热元件的位置和温度。获得的结果表明,对于电气控制柜内的单个元件过热,温度和位置的识别误差分别为2.11%和5.32%。对于电气控制柜内的多个元件过热,温度和位置的识别误差分别为3.28%和15.63%。验证了IHTP方法的可行性和有效性以及FVM识别算法的正确性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号