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Power IGBTs Application in AC-Wire DC-Motor Locomotive Thyristor-Based Power Circuit for Regenerative Brake Energy Efficiency Increase

机译:电源IGBTS在交流线DC电动机机车晶闸管的电源电路中的再生制动能效增加

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As the entire Baikal-Amur Mainline and the eastern part of Trans-Siberian Railway in Russia are electrified with 25 kV 50 Hz AC, current Russian heavy freight and longdistance passenger rail operation largely relies on domestic AC-fed electric locomotives with DC motors. These locomotives universally apply thyristor-based power converters for energy rectification and inversion. While being considered efficient enough not to require immediate modernization, this traction system has long been causing concerns regarding its energy performance, namely, a low power factor during regenerative brake mode. However, introducing progressive converters based on modern semiconductor devices (such as IGBTs) as a possible solution may prove not to be economically and logistically reasonable if applied industry-wise, especially in terms of obsolete locomotive series which are still in operation. This induces a certain interest in alternative means of AC-to-DC thyristor-based electric drive energy efficiency increase that can offer comparable positive effects at lower expenditures. A developing method of this sort is presented in this paper. The method implies shunting the standard thyristor bridge with a single IGBT branch that serves as a fully controllable electronic switch and allows for a revised, more efficient thyristor control algorithm. A significant increase in regenerative brake power factor has been confirmed by mathematical simulation also presented in the paper.
机译:由于整个Baikal-Amur主线和俄罗斯铁路铁路铁路的东部均以25 kV 50 Hz AC电气化,目前俄罗斯重型货运和长岩乘客铁路运行主要依赖于DC电机的国内AC馈电电源机车。这些机车普遍应用基于晶闸管的功率转换器以进行能量整流和反转。虽然被认为足够有效,但不需要立即现代化,但这条牵引系统长期以来一直导致其能量性能的担忧,即再生制动模式期间的低功率因数。然而,基于现代半导体器件(例如IGBT)作为可能的解决方案引入逐行转换器可能证明如果应用行业明智,特别是在仍在运行中的过时的机车系列方面,这是不经济和逻辑上合理的。这对基于AC-TO-DC晶闸管的电动驱动能效增加的替代手段引起了某种兴趣,可以在较低的支出下提供可比的积极效应。本文介绍了这种开发方法。该方法暗示用单个IGBT分支分流标准晶闸管桥,该晶闸电桥用作完全可控的电子开关,并允许修改更高效的晶闸管控制算法。本文还通过了数学模拟确认了再生制动力因数的显着增加。

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