CRH2列车通过中性段混合能量系统设计

Ikram Muhammad Talha, Lima . Huawei, Qadeer Abdul, Hussain Arif
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引用次数: 0

摘要

随着电力电子产业的革命,高速铁路产业也在很大程度上得到了升级。继混合动力有轨电车之后,现在的快速混合动力列车是牵引行业的未来。中性段是无动力段,必须小心放置,以避免速度损失和意外事故。本文提出了一种基于混合能量系统(HES)的拓扑结构,用于中国高速列车CRH2在“蓝鑫”轨道上运行,通过基于HES的动力的中性段,以减少速度损失的机会,并为工程师提供灵活性,以设计即使在丘陵地区的中性段。分析了列车通过中性段时的不同速度分布,进行了延误时间分析。由于戈壁沙漠的存在,使用METEREONOERM软件一直在考虑轨道位置的恶劣环境条件。这也验证了MPPT方法的有效性。HES包含基于石墨烯的超级电容器和光伏模块(嵌入在火车的屋顶)来为它们充电。基于中性点箝位(NPC)逆变器的拓扑结构与FOC-SVPWM控制相结合,有效地控制了牵引电机的转矩。提出的方法通过MATLAB仿真证明,HES拓扑不仅可以根据列车在中性段的进入速度节省时间,而且可以在没有任何电源的情况下运行一段时间,以便在停电或轨道位置发生事故时将列车重新安置到安全位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of Hybrid Energy System of CRH2 Train Passing Through Neutral Section
With the Power Electronics industry revolution, the high-Speed Railway industry is also upgraded to a very much great extent. After Hybrid Trams, now Fast Hybrid trains are the future of the traction industry. A neutral section is a powerless section that must be placed carefully to avoid speed loss and unexpected accidents. This paper presents a Hybrid Energy System (HES) based topology for Chinese fast Train CRH2 running on the “LANXIN” track to pass through a Neutral Section with HES based power to reduce the chances of speed loss and introduce flexibility for engineers to design Neutral sections even on hilly areas. Different speed profiles for a train passing through Neutral Section are analyzed for delay time analysis. Due to the presence of the Gobi Desert, harsh environmental conditions of the track’s location are kept under consideration using METEREONOERM software. Which also helped to verify the efficiency of MPPT method. HES contains Graphene-based Supercapacitors and PV modules (embedded on the train’s rooftop) to charge them. Neutral Point Clamped (NPC) inverter-based topology with FOC-SVPWM control is utilized to efficiently control the traction motor’s torque. Proposed methodology proves with MATLAB simulation that HES topology can not only save time depending on the entering speed of the train at the Neutral section, but can also run the train for some time without any power to relocate the train on a secure position in case of power failure or an accident on track location.
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