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Design and Development of an Efficient Multilevel DC/AC Traction Inverter for Railway Transportation Electrification

机译:铁路运输电气化高效多电平DC / AC牵引逆变器的设计与开发

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This paper presents a new trend in the transportation industry to adopt the multilevel inverter-based propulsion systems and gives the design procedure of a new dc/ac three-phase six-level inverter for powering the rail metro cars. The proposed inverter is based on the multilevel converter as it possesses much lower component voltage stress compared with the pulsewidth-modulated (PWM) topologies. Space vector pulsewidth modulation (SVPWM) with back-to-back clamped diode voltage modulation operation is used to achieve voltage regulation and high efficiency at any loading condition. Zero-current-switching operation is achieved without using an auxiliary circuit, which leads to minimum switching losses. The novelty of the proposed inverter lies within the proposed control methodology, which uses a new switching pattern that guarantees a modified SVPWM to eliminate the unwanted harmonics from the output voltage. The new algorithm is developed using numerical iterative solution using the Newton–Raphson technique that was downloaded to the processor using digital signal processing developed code. The mathematical model is simple but proven to be effective. As a result, a higher operating efficiency at full load of 98.5% is achieved as compared to previous efficiency of 97%. Analytical, simulation, and experimental results of a 1500 Vdc/700 Vac 400-kW converter are presented to offer the proof of concept. The converter provides real estate savings for the train under floor layout, higher operating efficiency as well as better cost price than the conventional two-level PWM hard-switched converters.
机译:本文提出了采用基于多电平逆变器的推进系统的交通运输行业的新趋势,并给出了一种用于为轨道地铁车辆供电的新型dc / ac三相六电平逆变器的设计程序。所提出的逆变器基于多电平转换器,因为与脉宽调制(PWM)拓扑相比,它具有更低的分量电压应力。具有背对背钳位二极管电压调制操作的空间矢量脉宽调制(SVPWM)用于在任何负载条件下实现电压调节和高效率。无需使用辅助电路即可实现零电流开关操作,从而将开关损耗降至最低。所提出的逆变器的新颖性在于所提出的控制方法之内,该方法使用一种新的开关模式,该模式可确保通过修改后的SVPWM消除输出电压中的有害谐波。新算法是使用牛顿-拉夫森技术的数值迭代解决方案开发的,该技术使用数字信号处理开发的代码下载到处理器中。数学模型很简单,但被证明是有效的。结果,与之前的97%的效率相比,在全负载下可获得98.5%的更高的工作效率。提出了1500 Vdc / 700 Vac 400 kW转换器的分析,仿真和实验结果,以提供概念验证。与传统的两级PWM硬开关转换器相比,该转换器可节省火车在地面布置下的空间,更高的运行效率以及更低的成本价格。

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