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Determination of the component sizes and analysis of the operational cost of PEM Fuel Cell-Battery Hybrid Energy System to Retrofit the Diesel Locomotives of Indian Railway

机译:PEM燃料电池-电池混合能源系统的部件尺寸确定和运营成本分析,以对印度铁路的柴油机车进行改造

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The paper presents a multi-objective design optimization approach for determination of the component sizes of a polymer electrolyte membrane fuel cell (PEMFC)-battery hybrid energy system (HES) to substitute the three diesel locomotive classes operating in Indian railways. The objective functions of optimization are the minimization of the total cost of the HES and the fuel consumption. An energy management strategy is used for the load distribution between the two energy sources and is implemented as the sub-routine in the optimization algorithm. For simulation study, the real-world drive cycle of a local passenger train functional in Assam, India is considered. Three different Pareto fronts containing the different sets of PEMFC and battery sizes are obtained for the three locomotives. Lastly, a comparison between the diesel locomotives and the proposed HES is carried out in terms of their operational cost to examine the advantages of the proposed HES.
机译:本文提出了一种用于确定聚合物电解质膜燃料电池(PEMFC)-电池混合能源系统(HES)组件尺寸的多目标设计优化方法,以代替印度铁路中运行的三种柴油机车类别。优化的目标功能是使HES的总成本和燃油消耗最小化。能量管理策略用于两个能量源之间的负载分配,并作为优化算法中的子例程实现。为了进行仿真研究,考虑了印度阿萨姆邦运行的本地旅客列车的实际行驶周期。对于这三种机车,获得了包含不同组PEMFC和电池尺寸的三个不同的Pareto前沿。最后,根据机车的运行成本对柴油机车和拟议的HES进行了比较,以检验拟议的HES的优势。

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