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基于SHEPWM调制的电力机车全速度运行策略及切换方法研究
引用本文:李贵彬,李永东,郑泽东,王治国,唐梦婷.基于SHEPWM调制的电力机车全速度运行策略及切换方法研究[J].电机与控制学报,2017,21(4).
作者姓名:李贵彬  李永东  郑泽东  王治国  唐梦婷
作者单位:1. 新疆大学电气工程学院,新疆乌鲁木齐,830047;2. 新疆大学电气工程学院,新疆乌鲁木齐830047;清华大学电力系统国家重点实验室,北京100084;3. 清华大学电力系统国家重点实验室,北京,100084;4. 装甲兵工程学院控制工程系,北京,100072
基金项目:国家自然科学基金,新疆大学优秀博士生创新基金
摘    要:电力机车功率大、直流侧电压高、开关频率低、运行速度快,针对牵引状态下电机电流谐波含量大、转矩脉动大、定子发热等问题,研究了电力机车在整个运行速度范围内的调制策略。提出了电力机车调制方式由异步调制切换至同步SHEPWM调制然后再到最大电压利用区(方波调制)的策略。理论上分析推导了减小切换电流畸变的方案,针对该策略和方案进行了仿真研究并在异步电机小功率实验平台上进行了实验验证。仿真和实验结果表明,所提出的调制策略可以作为电力机车全速度范围调制策略,切换方案能够减小电流谐波含量,提高电压利用率,使电力机车在全速度范围内平稳运行。

关 键 词:电力机车  SHEPWM调制  切换方法  开关角  电压利用率

Research on the electric locomotive running and cutover methods using SHEPWM in whole speed range
LI Gui-bin,LI Yong-dong,ZHENG Ze-dong,WANG Zhi-guo,TANG Meng-ting.Research on the electric locomotive running and cutover methods using SHEPWM in whole speed range[J].Electric Machines and Control,2017,21(4).
Authors:LI Gui-bin  LI Yong-dong  ZHENG Ze-dong  WANG Zhi-guo  TANG Meng-ting
Abstract:The electric locomotive has high power,high DC power,low switching frequency,high speed and so on.When running in traction state,large current harmonic,torque ripple,the stator radiation and other problems are existed.The electric locomotive modulation strategy within the whole speed range was studied.Meanwhile the scheme from asynchronous modulation to synchronous SHEPWM modulation and then to the maximum voltage utilization area (square wave area) was proposed.The reducing switching current programs were the oretically deduced.The simulation and experiments on small power induction motor platform for experimental verification were done.The simulation and experimental results show that the modulation strategy can be used as electric locomotives whole-speed range modulation strategy.The cutover methods can reduce the current harmonic,and improve the voltage utilization.The electric locomotive can run smoothly in the whole speed range.
Keywords:electrical locomotive  SHEPWM modulation  cutover methods  switching angle  voltage utilization
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