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Simulation of a stabilised control strategy for PEM fuel cell and supercapacitor hybrid propulsion system for a city bus

机译:用于城市公交车的PEM燃料电池和超级电容器混合推进系统的稳定控制策略的仿真

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Fuel Cells (FC) are a clean energy source capable of powering a bus electrically with zero operating emissions. This research investigates the potential of FC and Supercapacitor (SC) hybrid buses for clean city transportation. To investigate the FC/SC hybridisation strategy, a scaled FC/SC hybrid drivetrain has been developed to provide the power system of a scaled bus model. The scaled model was developed as a MATLAB Simulink computer model and cross referenced against the constructed laboratory test rig for validation. A novel control strategy focusing on power balancing between the FC, the SC and the load has been developed and validated in the computer model. It has been demonstrated in both the test rig and computer simulation that the proposed control strategy is capable of maintaining a controlled and stable FC output while meeting different bus load regimes. The validated computer model can provide a reliably representative, convenient and low cost platform for further performance investigation and component optimisation of FC/SC hybrid drivetrains. The control strategy has also been demonstrated to be function as expected after scaling up the developed scaled model to a full scale model which can be used for simulation of practical bus performance. (C) 2018 The Author(s). Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:燃料电池(FC)是一种清洁能源,能够以零工作排放为公交车供电。这项研究调查了清洁城市交通中FC和超级电容器(SC)混合动力巴士的潜力。为了研究FC / SC混合策略,开发了比例缩放的FC / SC混合动力传动系统,以提供比例缩放的公交车模型的动力系统。缩放后的模型被开发为MATLAB Simulink计算机模型,并与构建的实验室测试平台进行交叉引用以进行验证。在计算机模型中开发并验证了一种新颖的控制策略,该控制策略着重于FC,SC和负载之间的功率平衡。在试验台和计算机仿真中都证明,所提出的控制策略能够在满足不同的总线负载状况的同时,保持受控和稳定的FC输出。经过验证的计算机模型可为FC / SC混合动力传动系统的进一步性能研究和组件优化提供可靠,有代表性,方便且低成本的平台。在将开发的比例模型按比例放大到可用于模拟实际总线性能的全比例模型后,该控制策略也被证明具有预期的功能。 (C)2018作者。由Elsevier Ltd代表Hydrogen Energy Publications LLC发布。

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