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Energy management of a plug-in fuel cell/battery hybrid vehicle with on-board fuel processing

机译:具有车载燃料处理的插电式燃料电池/电池混合动力汽车的能源管理

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This paper describes the energy management controller design of a mid-sized vehicle driven by a fuel cell/battery plug-in hybrid powertrain, where an experimentally validated hight temperature polymer electrolyte membrane fuel cell model is used. The power management strategy is derived by the application of the Pontryagin's Minimum Principle, where the control parameter is adapted by using feedback information on the state of charge and total trip length forecast as a function of a moving average of past information about the driving cycle speed. The strategy we propose aims at achieving a real time suboptimal solution of the control problem which is cast into the minimization of the consumed fuel. The vehicle is also equipped by an auto-thermal reformer and, in order to minimize the hydrogen buffer size, the control algorithm is subject to constraints on the maximum hydrogen buffer level. A comparative analysis of the proposed strategy against the optimal one is conducted and results are reported. The obtained fuel consumptions are also compared to those obtained by the same vehicle, powered by an internal combustion engine and by a plug-in hybrid electric powertrain. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了由燃料电池/电池插电式混合动力总成驱动的中型车辆的能量管理控制器设计,其中使用了经过实验验证的高温聚合物电解质膜燃料电池模型。动力管理策略是通过应用Pontryagin的最小原理得出的,其中控制参数通过使用有关充电状态的反馈信息和总行程长度预测来调整,该反馈信息是关于行驶周期速度的过去信息的移动平均值的函数。我们提出的策略旨在实现对控制问题的实时次优解决方案,该解决方案将使耗油量降至最低。该车辆还配备了自动热重整器,并且为了最小化氢缓冲液的大小,控制算法受到最大氢缓冲液水平的限制。对建议的策略与最佳策略进行了比较分析,并报告了结果。还将获得的燃料消耗与同一辆车,由内燃机和插电式混合动力总成驱动的燃料消耗进行比较。 (C)2016 Elsevier Ltd.保留所有权利。

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