期刊文献+

雷达电子模块散热模拟测控系统设计与开发 被引量:2

Design and Development of Heat Dissipation Simulation Measurement and Control System for Radar Electronic Module
下载PDF
导出
摘要 随着现代雷达电子模块集成度和组装密度的提高,电子模块的热流密度不断增大,散热成为了结构设计中的重要因素。本文针对电子模块热设计是否满足实际工作要求难以验证的问题,进行雷达电子模块散热模拟测控系统设计与开发,在建立了测控系统总体方案的基础上,通过硬件集成设计、PLC编程和触摸屏组态等环节实现了该系统模拟热源和温度采集两大功能,且实际使用过程表明:该系统具有实时性好、操作简单、工作稳定等优点。散热模拟测控系统的研发为电子模块散热设计的验证提供了良好的实验平台。 With the improvement of the integration and assembly density of the electronic modules of modern radar,the heat flux of the electronic modules is increasing,and the heat dissipation has become an important factor in the structural design.Aiming at the problem that it is difficult to verify whether the thermal design of electronic module meets the radar working requirements,the design and development of heat dissipation simulation measurement and control system are carried out.On the basis of establishing the overall design scheme of the system,the two functions of simulating heat source and collecting temperature of the system are realized according to the process of hardware integration design,PLC programming and tough screen configuration.The actual application process shows that the system has the advantages of good real-time,simple operation and stable working.The development of the heat dissipation simulation measurement and control system provides a good experimental platform for the verification of thermal design of radar electronic modules.
作者 俞涛 王国超 王宁 YU Tao;WANG Guochao;WANG Ning(Xi'an Electronics Engineering Research Institute, Xi'an 710100)
出处 《火控雷达技术》 2021年第4期69-77,共9页 Fire Control Radar Technology
关键词 雷达电子模块 模拟热源 温度采集 测控系统 PLC编程 radar electronic module simulation of heat source temperature data collection measurement and control system PLC programming
  • 相关文献

参考文献7

二级参考文献25

  • 1张莹,诸凯,梁雨迎.用于大型服务器CPU冷却的散热器性能研究[J].流体机械,2012,40(12):62-65. 被引量:3
  • 2谢德仁.GJB/Z 27-1992.电子设备可靠性热设计手册[S].北京:机械电子工业部电子标准化研究所,1992.
  • 3PATANKAR S V, LIU C H, SPARROW E M. Fully devel- oped flow and heat transfer in ducts having streamwise-peri- odic variations of cross-sectional area [ J ]. ASME Journal of Heat Transfer, 1977, 99(2) : 180-186.
  • 4SPARROW E M, LIU C H. Heat-transfer, pressure-drop and performance relationships for in-line, staggered, and continuous plate heat exchangers [ J ]. International Journal of Heat and Mass Transfer, 1979, 22(12) : 1613-1625.
  • 5PATANKAR S V, PRAKASH C. An analysis of the effect of plate thickness on laminar flow and heat transfer in interrupt-ed-plate passages [ J ]. International Journal of Heat and Mass Transfer, 1981, 24(11) : 1801-1810.
  • 6TUCKERMAN D B, PEASE R F W. High-performance heat sinking for VESI[J]. IEEE Electron Device Letters, 1981, 2(5) : 126-129.
  • 7FENG W J, HUANG D G. Study on the optimization de- sign of flow channels and heat dissipation performance of liquid cooling modules [ C ]//International Conference on Mechatronics and Automation, 2009: 3145-3149.
  • 8王建峰.固态有源相控阵雷达热控制技术[J].电子机械工程,2007,23(6):27-32. 被引量:16
  • 9莫冬传,吕树申,金积德.高热流密度均温板的传热特性实验研究[J].工程热物理学报,2008,29(2):317-319. 被引量:16
  • 10王彦海,张世伟,徐岩峰.Icepak仿真软件在水冷底板热设计中的应用[J].电子机械工程,2008,24(1):27-29. 被引量:16

共引文献34

同被引文献8

引证文献2

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部