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首页> 外文期刊>Control Engineering Practice >Optimal power management of an experimental fuel cell/supercapacitor-powered hybrid vehicle
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Optimal power management of an experimental fuel cell/supercapacitor-powered hybrid vehicle

机译:实验燃料电池/超级电容器驱动的混合动力汽车的最佳功率管理

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摘要

This paper deals with power flow management within a hybrid fuel cell-powered vehicle during real-time operation. The aim is the real-time control of the power distribution between the fuel cell and its associated energy storage to optimize the global hydrogen consumption while maintaining drivability. An original concept to convert the electrical power flow into equivalent hydrogen cost is proposed. On that basis, the previously developed control strategy (the equivalent consumption minimization strategy) is used to determine the real-time optimal power distribution by simple minimization of a univariate form. The approach presented has been applied to and implemented on a real fuel cell-supercapacitor-powered vehicle. Experimental and simulation results are presented, demonstrating that this approach provides an improvement of fuel efficiency along with robustness and ease of implementation.
机译:本文探讨了混合动力燃料电池动力车辆在实时运行期间的功率流管理。目的是实时控制燃料电池及其相关能量存储之间的功率分配,以在保持可驾驶性的同时优化全局氢气消耗。提出了将电能流转换为等效氢气成本的原始概念。在此基础上,以前开发的控制策略(等效功耗最小化策略)用于通过单变量形式的最小化确定实时最佳功率分配。提出的方法已应用于实际的由燃料电池超级电容器驱动的车辆。给出了实验和仿真结果,表明该方法可提高燃油效率,并具有鲁棒性和易于实施的特点。

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