1.中国铁道科学研究院集团有限公司 机车车辆研究所,北京 100081
2.北京纵横机电科技有限公司,北京 100081
杨万坤(1972—),男,副研究员,主要从事机车车辆子系统研究;E-mail:yangwankun@zemt.cn
扫 描 看 全 文
杨万坤, 康晶辉, 薛江, 等. 城市轨道交通车辆牵引特性试验方法的改进[J]. 机车电传动, 2021,(4):153-156.
Wankun YANG, Jinghui KANG, Jiang XUE, et al. Improvement of Traction Characteristics Test Method of Urban Rail Transit Vehicles[J]. Electric Drive for Locomotives, 2021,(4):153-156.
杨万坤, 康晶辉, 薛江, 等. 城市轨道交通车辆牵引特性试验方法的改进[J]. 机车电传动, 2021,(4):153-156. DOI: 10.13890/j.issn.1000-128x.2021.04.024.
Wankun YANG, Jinghui KANG, Jiang XUE, et al. Improvement of Traction Characteristics Test Method of Urban Rail Transit Vehicles[J]. Electric Drive for Locomotives, 2021,(4):153-156. DOI: 10.13890/j.issn.1000-128x.2021.04.024.
通过对牵引特性曲线测试的加速度法和电功率法的对比分析,提出一种将加速度法和电功率法相结合用来测量城市轨道交通车辆牵引特性曲线的新方法,即在恒转矩区采用加速度法,在恒功率区和自然特性区采用改进的电功率法。试验表明,该方法充分结合加速度法和电功率法的优点,能有效提升测试的精度。
Based on the comparative analysis of acceleration method and electric power method in traction characteristic curve test, a new method combining acceleration method and electric power method was proposed to measure traction characteristic curve of urban rail transit vehicles, that is, acceleration method was adopted in constant torque area, and improved electric power method was adopted in constant power area and natural characteristic area. The test showed this method combine the advantages of acceleration method and electric power method, and could effectively improve the test accuracy.
城市轨道交通牵引特性轮周牵引力加速度电功率
urban rail transittraction characteristicstractive effort at wheel rimaccelerationelectric power
建设部标准定额研究所. 城市轨道交通车辆组装后的检查与试验规则:GB/T 14894—2005[S]. 北京: 中国标准出版社, 2006.
Standard rating research institute of MOC. Rules for inspecting and testing of urban rail transit vehicles after completion of construction: GB/T 14894—2005[S]. Beijing: Standards Press of China, 2006.
IEC/TC9. Railway applications - Rolling stock - Testing of rolling stock on completion of construction and before entry into service: IEC 61133:2016[S]. Geneva: International Electrotechnical Commission (IEC), 2016.
周晶杰, 文秧林. 动力分散型动车组牵引特性的在线测量[J]. 电力机车与城轨车辆, 2014, 37(4): 54-56.
ZHOU Jingjie, WEN Yanglin. Traction performance online test for EMU with distributed power[J]. Electric Locomotives & Mass Transit Vehicles, 2014, 37(4): 54-56.
林文立. 地铁动车牵引传动系统分析、建模及优化[D]. 北京: 北京交通大学, 2010.
LIN Wenli. Analysis, modeling and optimization of metro traction system[D]. Beijing: Beijing Jiaotong University, 2010.
陶彩霞, 杨艳萍, 李霄. 地铁牵引电机牵引特性仿真研究[J]. 自动化与仪器仪表, 2012(6): 25-27.
TAO Caixia, YANG Yanping, LI Xiao. Simulation research on tractive characteristics of metro traction motor[J]. Automation & Instrumentation, 2012(6): 25-27.
王鹤鸣, 郑良广, 杨玉钊. 基于大数据平台的能耗分析与管理系统[J]. 机车电传动, 2019(4): 107-111.
WANG Heming, ZHENG Liangguang, YANG Yuzhao. Energy analysis and management system for railway transportation based on big data platform[J]. Electric Drive for Locomotives, 2019(4): 107-111.
韩妍松, 杨乐, 李作鑫. 基于CAN总线的制动维护终端监控系统的设计[J]. 铁道机车与动车, 2019(11): 16-19.
HAN Yansong, YANG Le, LI Zuoxin. Design of brake maintenance terminal monitoring system based on CAN bus[J]. Railway Locomotive and Motor Car, 2019(11): 16-19.
0
浏览量
9
下载量
0
CSCD
1
CNKI被引量
关联资源
相关文章
相关作者
相关机构