您好,欢迎来到中国测试科技资讯平台!

首页> 《中国测试》期刊 >本期导读>电动汽车低于30MHz频段EMI测试标准分析

电动汽车低于30MHz频段EMI测试标准分析

3323    2016-10-08

免费

全文售价

作者:曾博, 邓俊泳, 林道祺, 林青, 刘国荣

作者单位:中国电器科学研究院有限公司, 广东 广州 510275


关键词:电动汽车;电磁干扰;测试方法;包络检波;车辆工况


摘要:

针对电动汽车高度集成的电力驱动系统可能带来电磁兼容性问题,分析国际现行电动汽车低于30 MHz频段电磁骚扰测试标准,指出各标准对测量仪器、测量场地规定较为一致,但天线系统类型、位置布局、测试方向、检波方式以及汽车工况有不同要求,GB/T 183872008规定巡航工况,CISPR 36规定巡航、空挡2种工况,这两项标准未明确普遍提出使用测功机要求;SAE J551-5:2012规定巡航、制动、怠速3种工况,必须使用测功机。结果表明:制定中的CISPR 36开始关注30 MHz以下频段电磁干扰(electromagnetic interference,EMI)特性,国际上EMI测量手段一致,测量对象、评价指标则各有区别,SAE J551-5:2012标准通过设置能够模拟出常规驾驶时可能存在的工况,以保证电动汽车在各种情况使用的过程中不会出现辐射超标的现象。


Comparison of below 30 MHz electric vehicle EMI measurements method standard

ZENG Bo, DENG Junyong, LIN Daoqi, LIN Qing, LIU Guorong

China National Electric Apparatus Research Institute Co., Ltd., Guangzhou 510275, China

Abstract: Electric vehicle's drive system might bring electromagnetic compatibility problems. Current international standards of electric vehicles below 30 MHz electromagnetic compatibility measurements were compared. The stipulation of measuring instrument and ground in different standards were consistent, however, direction, location, envelope-demodulation, type of antennas system, and the vehicle conditions differred. Cruise operating condition was set up by GB/T 18387——2008, cruise and neutral were stipulated by CISPR 36. A non-enforcement using dynamometer were put forward by these two standards. Result showed that CISPR 36 was being developed for below 30 MHz band EMI measurements. The measuring devices were consistent, but the measuring methods, objects, and evaluation index were distinguishing. Different vehicle conditions were also stipulated for EMI measuring in SAE J551-5:2012.

Keywords: blade electric vehicle;EMI;measurement method;envelope-demodulation;vehicle conditions

2016, 42(9): 11-14  收稿日期: 2016-3-28;收到修改稿日期: 2016-4-20

基金项目: 

作者简介: 曾博(1981-),男,湖北公安县人,工程师,硕士,主要从事电磁兼容检测技术研究。

参考文献

[1] HIRSCH H, JESCHKE S, WEI L, et al. Latest development of the national and international EMC-standards for electric vehicles and their charging infrastructure[C]//IEEE International Symposium on Electromagnetic Compatibility. EMC,2015:708-713.
[2] IGLESIAS M, ECHEVERRIA I, ARTECHE F, et al. EMC mapping of a power train for fully electric 4-wheel drive vehicle[C]//International Symposium on Electromagnetic Compatibility Europe,2014:414-419.
[3] IGLESIAS M, ECHEVERRIA I, ARTECHE F, et al. A characterization of em coupling in a fully electric 4-wheel drive vehicle[C]//IEEE International Symposium on Electromagnetic Compatibility. EMC,2015:656-661.
[4] WILLMANN B, RINKLEFF T, OBHOLZ M, et al. Automotive industry's EMC requirements for voltage ripple in the high-voltage system of electrical vehicles[C]//IEEE International Symposium on Electromagnetic Compatibility. EMC,2015(22):673-678.
[5] 张戟,韩发娟. 燃料电池轿车用驱动电机传导发射测试分析[J]. 佳木斯大学学报(自然科学版),2012(4):481-484.
[6] 高新杰,李国珍,李燕侠,等. 电动汽车常见的EMC问题与特性[J]. 安全与电磁兼容,2015(3):15-19.
[7] 崔祥飞,程维明,杨东. 电动汽车驱动系统EMC问题的测试及整改[J]. 电子测量技术,2013,36(5):45-48.
[8] Performance levels and methods of measurement of magnetic and electric field strength from electric vehicles, 150 kHz to 30 MHz:SAE J551-5:2012[S]. Warrendale:Sea Publications,2012.
[9] 电动车辆的电磁场发射强度的限值和测量方法,宽带,9 kHz~30 MHz:GB/T 18387-2008[S]. 北京:中国标准出版社,2008.
[10] Vehicles boats and internal combustion engines-radio disturbance characteristics-Limits and methods of measurements of radiated field below 30 MHz:CISPR/D/402/NP[S]. New York:CISPR Publications,2016.
[11] 李建明,王巍,肖鹏,等. 半电波暗室中的EMI辐射骚扰试验测量不确定度分析与评定[J]. 中国测试,2012,38(6):17-19.
[12] Vehicles boats and internal combustion engine-radio disturbance characteristics-limits and methods of measurement for the protection of off-board receivers:CISPR 12-2009[S]. Australia:STANDARDS Australia,2009.
[13] 胡鹏浩,朱良,赵鹏. 底盘测量仪研制及标定分析[J]. 中国测试,2015,41(6):60-63.