A Renwable Electricity-Hydrogen-Integrated Hybrid DC Traction Power System

Haoyuan Yu, Yanbo Wang, Zhe Chen
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引用次数: 4

Abstract

The coexistence of electricity-driven train and hydrogen-driven train is becoming an important trend for future metro transportation. This article presents a novel electricity-hydrogen-integrated hybrid DC traction power system (HDCTPS) to integrate renewable microgrid, hydrogen subsystem and DC traction power system (DCTPS). A triple active bridge converter-based metro energy router is developed to integrate efficiently those three subsystems in HDCTPS. Then, the operation and control framework of HDCTPS is established, where the four operation modes are developed according to the power characteristic of renewable energy and regenerative braking operation of DCTPS. Power management and control strategy of HDCTPS are developed to perform smooth transition between different modes. Simulation results are given to validate the proposed HDCTPS and control framework. The proposed HDCTPS, as a novel operation strategy for future metro system, is able to utilize efficiently renewable energies and regenerative braking energy to achieve energy saving.
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一种可再生电-氢一体化混合直流牵引动力系统
电力驱动列车与氢动力列车并存,正成为未来地铁交通发展的重要趋势。提出了一种集可再生微电网、氢子系统和直流牵引电力系统于一体的新型电-氢一体化混合直流牵引电力系统。为了将HDCTPS中三个子系统有效集成,设计了一种基于三有源桥式变换器的城域能量路由器。然后,建立了HDCTPS的运行控制框架,并根据DCTPS的可再生能源功率特性和再生制动运行特性,开发了四种运行模式。开发了HDCTPS的电源管理和控制策略,以实现不同模式之间的平滑转换。仿真结果验证了所提出的HDCTPS和控制框架的有效性。提出的HDCTPS能够有效地利用可再生能源和再生制动能量来实现节能,是未来地铁系统的一种新型运营策略。
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