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基于IGBT的Buck电路共模EMI特性研究 被引量:6

Common-Mode EMI Behavior of an IGBT Buck Converter
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摘要 针对IGBT的高du/dt给电力电子装置带来的严重共模电磁干扰(common-mode electromagnetic interfer-ence,CM EMI)问题,深入分析了Buck电路的CM EMI,首先提出了Buck电路的共模电流等效电路,分析了噪声源频谱及其与输入电压、开关频率、开关速度等运行参量间的关系。为弥补理论分析的不足,以实验手段研究了采用IGBT的Buck电路的输入电压、开关频率、负载电流、占空比、驱动电阻等参量对共模EMI的影响。研究表明:共模EMI与占空比无关而与输入电压和开关频率成正比关系。驱动电阻和负载电流均影响开关速度,因而对共模EMI也有影响,其中负载电流的影响与开关器件的开关特性有很大关系。 The common-mode electromagnetic interference (CM EMI) of Buck converters is analyzed in detail in order to get the relationship between the CM EMI and key operation parameters. A CM equivalent circuit of the converter is proposed, and the relationship between spectrum of the CM noise source and operation parameters such as input voltage, switching frequency, switching speed are analyzed. To verify and supplement the theoretical analysis, experiments are carried out on an IGBT Buck converter to test the actual influences of input voltage, switching frequency, duty ratio, load current and driving resistance on the CM EMI. The results indicate that CM EMI is not affected by the duty ratio and it is proportional to the input voltage and switching frequency. Both the load current and gate drive resistance can influence the CM EMI since they can change the switching speed. The influence of load current is closely related to characteristics of switching devices.
出处 《高电压技术》 EI CAS CSCD 北大核心 2008年第10期2234-2239,共6页 High Voltage Engineering
基金 国家自然科学基金(50407011)~~
关键词 IGBT BUCK电路 共模EMI 驱动电阻 负载电流 开关特性 IGBT Buck circuit common-mode EMI gate drive resistance load current characteristics of switching devices
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参考文献15

  • 1Nave M. Prediction of conducted emissions in switched-mode power supplies [C] // Proceedings of the IEEE International Symposium on EMC. San Diego, CA, 1986: 167-173.
  • 2Zverev I, Konrad S, Voelker H, et al. Influence of the gate drive techniques on the conducted EMI behavior of a power converter[C]//IEEE PESC 28th Annual IEEE. St Louis, USA: IEEE, 1997, 2:1522-1528.
  • 3Zhu H, Lai J, Hefner Jr A R, et al. Analysis of conducted EMI emissions from PWM inverter based on empirical models and comparative experiments[C]//IEEE PESC. Charleston, USA: IEEE, 1999, 2: 861-867.
  • 4Nagrial M H, Hellany A. Radiated and conducted EMI emissions in switch mode power supplies (SMPS) : sources, causes and predictions[C]//IEEE INMIC. Pakistan, 2001: 54-61.
  • 5汪东艳,张林昌.电力电子装置电磁兼容性的研究进展[J].电工技术学报,2000,15(1):47-51. 被引量:23
  • 6Liu Q, Shen W, Wang F, et al. Experimental evaluation of IGBTs for characterizing and modeling conducted EMI emission in PWM inverters[C]//IEEE PESC, 2003, 34th Annual. Acapulco, Mexico: IEEE, 2003, 4: 1951-1956.
  • 7Xuejun Pei, Jian Xiong, Yong Kang, et al. Analysis and suppression of conducted EMI emission in PWM inverter[C]// IEEE IEMDC. Pakistan, 2003, 3: 1787-1792.
  • 8Zhong E, Lipo T, Jaeschker J. Analytical estimation and reduction of conducted EMI emissions in High power PWM inverter drives[C] //IEEE PESC, June, 1996, 27th Annual IEEE. Melano, Italy: IEEE, 1996, 2: 1169-1175.
  • 9Frank K, Petzodlt J, Volker H. Experiment and simulative investigations of conducted EMI performance of IGBTs for 5-10 kVA converters[C]//IEEE PESC, June, 1996, 27th Annual IEEE. Melano, Italy: IEEE, 1996, 2: 1986-1991.
  • 10Guttowski S, Jorgensen H, Keumann K. The possibilities of reducing conducted line emissions by modifying the basic parameters of voltage-fed pulsed inverters[C]//IEEE PESC, June, 1997, 28th Annual IEEE. St Louis, USA: IEEE, 1997, 2: 1535-1540.

二级参考文献2

  • 1Guo T,IEEE Trans Power Electron,1996年,11卷,3期,480页
  • 2Zhong Erkuan,IEEE Trans Industry Application,1995年,31卷,6期,1247页

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