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Performance study and efficiency improvement of Hybrid Electric System dedicated to transport application

机译:用于交通运输应用的混合动力系统的性能研究和效率提高

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A Proton Exchange Membrane Fuel Cell (PEMFC) powered Hybrid Electric System (HES) is one of an appreciating research issue for the future due to its high efficiency and capability to use hydrogen as a fuel. The PEMFC cannot sufficiently meet sustained load demands in some cases. For that, to compensate this problem incorporating the slow transient response of the PEMFC, Ultra-capacitors (UCaps) are potential candidates for a solution in this aspect. An adequate Energy management System (EMS) is one essential objective of the researches in this area. Hence, this paper proposed an efficient dynamic model using an energy storage system with the sufficient power capacity to keep the smooth operation of the system. To satisfy the load requirements and optimize the active power flow between hybrid power sources for different modes, the EMS was proposed. This latter was appreciated for its capacity to serve the required power through effective utilization of the PEMFC and UCap. To maximize the system efficiency, the functioning of the system is depending on the decision making and the control of all the system component states. The HES and the control approach are made using Matlab/Simulink environment, from which, the obtained results indicate the reliability and the effectiveness desirability of the HES and its proposed energy management strategy. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:质子交换膜燃料电池(PEMFC)供电的混合动力系统(HES)由于其高效率和使用氢作为燃料的能力而成为未来的重要研究问题之一。在某些情况下,PEMFC无法充分满足持续的负载需求。为此,为了补偿包含PEMFC的缓慢瞬态响应的问题,超级电容器(UCaps)是该方面解决方案的潜在候选人。适当的能源管理系统(EMS)是该领域研究的基本目标之一。因此,本文提出了一种利用能量存储系统的高效动态模型,该模型具有足够的功率容量来保持系统的平稳运行。为了满足负载需求并针对不同模式优化混合电源之间的有功功率流,提出了EMS。后者因其通过有效利用PEMFC和UCap提供所需功率的能力而受到赞赏。为了使系统效率最大化,系统的功能取决于所有系统组件状态的决策和控制。使用Matlab / Simulink环境制作了HES和控制方法,从中获得的结果表明了HES的可靠性和有效性以及所提出的能源管理策略。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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