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Energy Efficiency and Fuel Economy of a Fuel Cell/Renewable Energy Sources Hybrid Power System with the Load-Following Control of the Fueling Regulators

机译:燃料电池/可再生能源混合动力系统的能效和燃料经济性具有燃料调节器的负载控制

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摘要

Two Hybrid Power System (HPS) topologies are proposed in this paper based on the Renewable Energy Sources (RESs) and a Fuel Cell (FC) system-based backup energy source. Photovoltaic arrays and wind turbines are modeled as RESs power flow. Hydrogen and air needed for FC stack to generate the power requested by the load are achieved through the Load-Following control loop. This control loop will regulate the fueling flow rate to load level. A real-time optimization strategy for RES/FC HPS based on Extremum Seeking Control will find the Maximum Efficiency Point or best fuel economy point by control of the boost converter. Therefore, two HPS configurations and associated strategies based on Load-Following and optimization loops of the fueling regulators were studied here and compared using the following performance indicators: the FC net power generated on the DC bus, the FC energy efficiency, the fuel consumption efficiency, and the total fuel consumption. An increase in the FC system’s electrical efficiency and fuel economy of up to 2% and 12% respectively has been obtained using the proposed optimization strategies compared with a baseline strategy.
机译:本文基于可再生能源(RESS)和基于燃料电池(FC)系统的备用能源,提出了两个混合动力系统(HPS)拓扑。光伏阵列和风力涡轮机被建模为RESS电流。 FC堆栈所需的氢气和空气通过负载跟随控制回路实现负载的载荷所需的电力。该控制回路将调节加油流量以加载水平。基于极值寻求控制的RES / FC HP的实时优化策略将找到通过控制升压转换器的最大效率点或最佳燃料经济性点。因此,这里研究了两个基于加载调节器的负载调节器和优化环路的HPS配置和相关策略,并使用以下性能指标进行比较:在直流总线上产生的FC净功率,FC节能,燃料消耗效率,以及总燃料消耗。与基线策略相比,使用所提出的优化策略,可以获得FC系统的电气效率和燃油经济性高达2%和12%的增加。

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