[1]王瑞,张志杰,李岩峰,等.基于热电偶的爆炸场温度补偿方法及其LabVIEW实现[J].爆破器材,2016,45(01):60-64.[doi:10.3969/j.issn.1001-8352.2016.01.014]
 WANG Rui,ZHANG Zhijie,LI Yanfeng,et al.Temperature Compensation and Its LabVIEW Implementation of Explosion Field Based on Thermocouple[J].EXPLOSIVE MATERIALS,2016,45(01):60-64.[doi:10.3969/j.issn.1001-8352.2016.01.014]
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基于热电偶的爆炸场温度补偿方法及其LabVIEW实现()
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《爆破器材》[ISSN:1001-8352/CN:32-1163/TJ]

卷:
45
期数:
2016年01
页码:
60-64
栏目:
安全与测试
出版日期:
2016-01-29

文章信息/Info

Title:
Temperature Compensation and Its LabVIEW Implementation of Explosion Field Based on Thermocouple
文章编号:
4952
作者:
王瑞张志杰李岩峰夏永乐贾振华
中北大学仪器科学与动态测试教育部重点实验室(山西太原,030051)
Author(s):
WANG Rui ZHANG Zhijie LI Yanfeng XIA Yongle JIA Zhenhua
Key Laboratory of Instrumentation Science & Dynamic Measurement of Ministry of Education, North University of China (Shanxi Taiyuan, 030051)
关键词:
温度测试动态校准动态补偿滤波器LabVIEW
Keywords:
temperature test dynamic calibration dynamic compensation filter LabVIEW
分类号:
TQ56;TP274
DOI:
10.3969/j.issn.1001-8352.2016.01.014
文献标志码:
A
摘要:
在爆炸场瞬态高温测试过程中,由于热电偶的动态特性较差,使得测试结果存在较大动态误差。针对该问题,应用了以大功率激光器为热源的可溯源动态校准系统,对热电偶传感器进行动态校准,分析其动态特性;在此基础上,运用MATLAB和量子粒子群优化(QPSO)算法设计动态补偿滤波器,试验验证了动态补偿的有效性;通过LabVIEW与MATLAB混合编程,最终在LabVIEW平台上实现对热电偶输出的动态补偿。结果表明,补偿后的热电偶响应速度加快,爆炸场温度补偿结果可信。
Abstract:
During measuring transient high temperature of explosion field, aiming at the problem that the poor dynamic characteristics of thermocouples results in a big dynamic error of test results, the traceable dynamic calibration system was used to perform dynamic calibration of thermocouples by selecting a high-power semiconductor laser as heat source, and its dynamic characteristics were analyzed. With the quantumbehaved particle swam optimization (QPSO) algorithm on MATLAB platform, a model of dynamic compensation filter is established, and the effectiveness of the dynamic compensation was verified by experiment. Finally, the compensation values of thermocouple were displayed by LabVIEW, basing on the mixed programming of LabVIEW and MATLAB. The experiment results show that the compensated thermocouple has ideal dynamic response characteristics, and the temperature compensation of the explosion field is reliable.

参考文献/References:

[1]韩早,王伯良,李席.全密闭空间内温压炸药的冲击波参数试验研究 [J].爆破器材,2015,44(1):20-23.
HAN Z,WANG B L,LI X. Experimental study on shock wave parameters of thermobaric explosive in fully enclosed space [J].Explosive Materials,2015,44(1):20-23.
[2]王代华,宋林丽,张志杰.基于钨铼热电偶的接触式爆炸温度测试方法 [J].探测与控制学报,2012,34(3):23-28.
WANG D H,SONG L L,ZHANG Z J.Contact measuring method of explosion temperature based on tungsten rhenium thermocouple[J].Journal of Detection & Control, 2012, 34(3): 23-28.
[3]杨磊,方建成,赵紫玉,等.基于LabVIEW的瞬态温度测试系统 [J].仪表技术与传感器,2008(6):49-51.
 YANG L, FANG J C, ZHAO Z Y, et al.Transient temperature measurement system based on LabVIEW [J]. Instrument Technique and Sensor,2008(6):49-51.
[4]郝晓剑.瞬态表面高温测量与动态校准技术研究 [D].太原:中北大学,2005. HAO X J. Transient high surface temperature measurement and dynamic calibration[D].Taiyuan:North University of China,2005.
[5]ARWATZ G, BAHRI C, SMITS A J, et al.Dynamic calibration and modeling of a cold wire for temperature measurement[J]. Measurement Science and Tech nology, 2013, 24(12):125301.
[6]李飞,郑恒. LabVIEW与MATLAB混合编程在数字天线阵列测试中的应用 [J].电子工程师,2007,33(3):1-3.
 LI F, ZHENG H. Application of composite programming of LabVIEW and MATLAB to test of digital antenna array[J]. Electronic Engineer,2007,33(3):1-3. 
[7]靖苏铜,赵福堂.基于LabVIEW的热电偶温度测量系统 [J].仪器仪表标准化与计量,2005(6):37-39.
JING S T, ZHAO F T. Thermocouple temperature measure system based on LabVIEW[J].Instrument Standardization and Metrological,2005(6):37-39.
[8]吕鹏飞,裴东兴,沈大伟.基于K型热电偶的瞬态测温技术的研究 [J].传感技术学报,2014,27(6):775-780.
 LǚP F,PEI D X, SHEN D W. The research of transient thermometry technology based on Kstyle thermocouple[J].Chinese Journal of Sensors and Actuators,2014,27(6):775-780.
[9]吴健,赵德光,张志杰. 基于神经网络的传感器动态补偿算法及DSP实现[J].计算机测量与控制,2011,19(5):1239-1241,1245.
 WU J, ZHAO D G, ZHANG Z J. Dynamic compensation of sensors algorithm based on neural network and its realization based on DSP[J].Computer Measurement & Control,2011,19(5):1239-1241,1245.
[10]宋广东,王昌,王金玉,等. 基于DLL技术和COM组件技术实现LabVIEW和MATLAB混合编程 [J].计算机应用与软件,2013,30(1):287-289.
SONG G D, WANG C, WANG J Y, et al. Implementing mixed programming with LabVIEW and MATLAB based on DLL technology and COM component tech nology[J].Computer Application and Software,2013, 30(1): 287-289.
[11]姚娟.基于无线网络的分布式测试系统软件平台设计 [D].太原:中北大学,2013.
 YAO J.The design of software platform of distributed measurement system based on WLAN[D].Taiyuan:North University of China,2013.
[12]黄世奎,彭宇宁,谢树平,等.LabVIEW与Matlab/Simulink混合编程方法及应用 [J].实验室研究与探索,2009,28(7):67-71.
 HUANG S K, PENG Y N,XIE S P, et al.Methods and application of mixed programming with LabVIEW and Matlab[J]. Research and Exploration in Laboratory,2009, 28(7):67-71.
[13]闫潇敏,苏健军,李芝绒,等. 坑道内温压炸药的爆炸热效应研究 [J].火工品,2015(1):22-25.
YAN X M, SU J J, LI Z R, et al. Experimental study on explosive thermal effect of thermalbaric explosives in tunnel[J].Initiators & Pyrotechnics,2015(1):22-25.

备注/Memo

备注/Memo:
收稿日期:2015-03-30
作者简介:王瑞(1988~),女,硕士,主要研究方向为毁伤性测试及信息处理。E-mail:wangruirui8596@163.com
通信作者:张志杰(1965~),男,博导,教授,主要研究方向为测试计量技术与仪器,动态测试与校准技术。E-mail:zhangzhijie@nuc.edu.cn
更新日期/Last Update: 2016-01-29