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地铁辅助变流器功率损耗与热仿真分析 被引量:11

Power Loss and Thermal Simulation Analysis of Auxiliary Converter for Metro Vehicle
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摘要 辅助变流器功率密度的不断提高使密闭箱体内的发热更加严重,因此辅助变流器热设计的重要性随之显现出来。以地铁辅助变流器为例,首先分析计算箱内各主要电气器件功率损耗,利用FloTHERM流体热仿真软件建立仿真模型,设置初始条件并求解计算,得出变流器运行中箱体内部的温度场和流场分布。之后对辅助变流器的样机进行了温升试验并将多测点实测温度与仿真结果对应位置进行了对比,对比的结果证明了热仿真方法对地铁辅助变流器进行发热情况分析的可行性与准确性,对辅助变流器的热设计提供了参考。 The increasing of power density of auxiliary converter exacerbates temperature rise inside the case, and the importance of thermal design of auxiliary converter is revealed. In this paper, using the auxiliary converter for metro vehicle as an example, the power loss of main electrical components in the case is analyzed and calculated firstly. The simulation model is built by FloTHERM fluid ther- mal simulation software. The initial conditions are set up and the flow field distribution is calculated. Then the temperature rise test of the auxiliary converter prototype is carried out and the results between test and simulation are compared. The feasibility and accuracy of the thermal simulation method of auxiliary converter for metro vehicle are proved by the comparison result, which provides a reference for the thermal design of auxiliary converter.
出处 《铁道机车车辆》 2016年第4期72-77,共6页 Railway Locomotive & Car
基金 城市轨道交通车辆关键系统研制项目(1451ZH4703)
关键词 地铁 辅助变流器 热设计 热仿真 功率损耗 metro auxiliary converter thermal design temperature rise simulation power loss
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  • 1高艳霞,龚幼民,陈伯时.电力电子器件模型参数辨识及其有效性验证[J].电力电子,2004,2(5):35-40. 被引量:1
  • 2熊妍,沈燕群,江剑,何湘宁.IGBT损耗计算和损耗模型研究[J].电源技术应用,2006,9(5):55-60. 被引量:64
  • 3徐晓婷,朱敏波,杨艳妮.电子设备热仿真分析及软件应用[J].电子工艺技术,2006,27(5):265-268. 被引量:23
  • 4Dewei Xu, Haiwei Lu, Lipei Hang, Satoshi Azuma, Masahiro Kimnata, and Ryohel Uchida. Power Loss and Junction Temperature Analysis of Power Semiconductor Devices Industry Applications, vol September/October 2002 WEEE 38, no.5, Transaction on pp, 1426-1431
  • 5A.D. Rajapakse, A.M. Gole and Electromagnetic transient simulation accurate representation of switching EL. Wilson. models for losses and thermal performance in power electronic systems IEEE Trans. Power Delivery, vol. 20, No.1, pp. 319-327, Jan. 2005.
  • 6J. Qian, A. Khan, A. I. Batarseh. Turn-off switching loss model and analysis of IGBT under different switching operation modes. Proc. 21st International Conference on Industrial Electronics, Control, and Instrumentation, 6-10 Nov. 1995, vol. 1, pp. 240 -245
  • 7Takashi Kojimna Yasushi Yaunada Marco Chiavrwini and Wolfgamg Mauro Ciappa. Fichtner. A NovelEleetro-thermal Simulation Approach of Power IGBT modules for automotive traction applications Proceeding of 2004 international symnposium on power semiconductor devices &ICs. Kitakyushu 2004
  • 8HUANG XIANJIN, ZHANG LIWEI, SUN HU, et al. Study of heat dissipation for HXD2 locomotives auxiliary converter[ C]// Energy Conversion Congress and Expo- sition (ECCE) 2010. America: ECCE, 2010: 1667- 1671.
  • 9黄先进,侯少敏,孙湖,林飞,郑琼林.牵引变流系统热设计与温升仿真研究[J].电力电子,2011(2):37-41. 被引量:8
  • 10范结义.功率模块热仿真分析与实践[J].机电元件,2011,31(4):57-59. 被引量:1

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