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A post-prognostics decision approach to optimize the commitment of fuel cell systems in stationary applications

机译:一种后预测决策方法,以优化燃料电池系统在静止应用中的承诺

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摘要

The use of fuel cells appears to be of growing interest as a potential alternative to conventional power systems. Fuel cell systems suffer however from insufficient durability and their lifetime may be improved. Prognostics results in the form of Remaining Useful Life are proposed to be used in a Prognostics and Health Management (PHM) framework to maximize the global useful life of a multi-stack fuel cell system under service constraint. Convex optimization is used to define the contribution of each stack to a global needed power output. A Mirror-Prox for Saddle Points method is proposed to cope with the assignment problem. Resolution method is detailed and promising simulation results are provided.
机译:燃料电池的使用似乎对传统动力系统的潜在替代品越来越大。燃料电池系统遭受耐久性不足,并且可以提高它们的寿命。预后,提出了在预后和健康管理(PHM)框架中使用剩余使用寿命的形式,以最大限度地利用服务约束下的多堆燃料电池系统的全球使用寿命。凸优化用于将每个堆栈的贡献定义为全局所需的功率输出。提出了一种用于马鞍点方法的镜像prox来应对分配问题。提供了详细和有希望的模拟结果的分辨率方法。

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