通过与无控制器的高压双向级联H桥21电平多电平再生制动机车逆变器(PID & ANFIS)的比较

Ms. J. Suganthi Vinodhini, D. R. Babu
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引用次数: 0

摘要

在机车方面,70%的铁路全部装备了新技术,特别是驱动感应电动机。在VSI中,目前机车的短路问题采用0 ~ 160hz的变频。本文介绍了一种机车新技术,特别是WAP-7D。在机车变换器的早期设计中,采用了基于GTO和单片机的技术,但该系统存在诸多缺陷。本文将采用再生制动的21电平多电平逆变器与采用ANFIS和PID的闭环进行了比较。本文对三相鼠笼式感应的转速进行了控制,并对OL系统和CL系统的总谐波畸变进行了比较。采用SPWM技术降低了系统的THD。利用MATLAB simulink对OL和CL系统进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High voltage bidirectional cascaded H bridge 21 level multilevel inverter with regenerative braking for locomotive by comparing with (PID & ANFIS) and without controller
In Locomotives 70% of all railways was fully equipped with the new technologies especially to drive the Induction motor. In VSI the variable frequency of 0 to 160 Hz was at present used in the locomotive with short circuiting problem. In this paper It deals a new technologies for locomotive especially for WAP-7D.Earlier stage in locomotive the converter was designed with GTO and microcontroller based techniques where many drawbacks in that system. In this paper the new proposed 21 level multilevel inverter using regenerative braking was compared with the closed loop using ANFIS and PID. The speed of the three phase squirrel cage induction was controlled and the total harmonic distortion was compared by the OL and CL system in this paper. SPWM technique was carried out to reduce the THD for the proposed system. The simulation was carried out for the OL and CL system using MATLAB simulink.
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