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An Energy Management Strategy to concurrently optimise fuel consumption & PEM fuel cell lifetime in a hybrid vehicle

机译:能源管理策略可同时优化混合动力汽车的油耗和PEM燃料电池寿命

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The cost and reliability of fuel cells are major obstructions preventing fuel cell hybrid electric vehicle (FCHEV) from entering the mainstream market. However, many of the degradation methods are strongly affected by the operating conditions of the fuel cell and therefore can be mitigated by optimisation of the Energy Management Strategy (EMS). The major causes of fuel cell degradation are identified from the literature and a model is produced in order to estimate the effect of the EMS on the fuel cell degradation. This is used to produce an optimal strategy for a low speed campus vehicle using Stochastic Dynamic Programming (SDP). The SDP controller attempts to minimise the total running cost of the fuel cell, inclusive of both fuel consumption and degradation, each weighted by their respective costs. The new strategy is shown to increase the lifetime of the fuel cell by 14%, with only a 3.5% increase in fuel consumption, largely by avoiding transient loading on the fuel cell stack. (C) 2016 The Authors. Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:燃料电池的成本和可靠性是阻碍燃料电池混合动力电动汽车(FCHEV)进入主流市场的主要障碍。但是,许多降解方法受到燃料电池运行状况的强烈影响,因此可以通过优化能源管理策略(EMS)来缓解。从文献中确定了燃料电池退化的主要原因,并建立了一个模型,以估算EMS对燃料电池退化的影响。使用随机动态规划(SDP),这可为低速校园车辆产生最佳策略。 SDP控制器试图使燃料电池的总运行成本最小化,包括燃料消耗和降解,二者均由各自的成本加权。新策略显示出可将燃料电池的寿命延长14%,而燃料消耗仅增加3.5%,这在很大程度上是避免了燃料电池堆的瞬时负载。 (C)2016作者。由Elsevier Ltd代表Hydrogen Energy Publications LLC发布。

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