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Load following capability of fuel cell-microturbine based hybrid energy system for microgrid operation

机译:燃料电池-微涡轮混合动力系统微电网运行的负荷跟随能力

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Proton Exchange Membrane Fuel Cells (PEMFC) show great potential as a distributed generator in microgrid applications. However, physical constraints impinge PEMFC to follow rapid load following and often requires a supplementary energy storage such as battery or a supercapacitor for such assistance. This paper proposes MicroTurbine (MT) as an alternative over battery or supercapacitor based energy storage, to be used, not only to meet the transient part of the load but also the steady state. Proper, electrical and thermal integration of PEMFC and MT is critical for its successful implementation and industry acceptance. This paper focuses on the electrical integration of the systems and presents simple control strategies for load following operations in autonomous and grid connected modes. Controllers are designed using conventional loop gain technique. Both PEMFC and MT are modeled in MATLAB/Simulink environment. Simulation results verify the effectiveness of the designed controllers under both the modes of operation.
机译:质子交换膜燃料电池(PEMFC)在微电网应用中具有作为分布式发电机的巨大潜力。但是,物理限制迫使PEMFC跟随快速负载跟踪,并且通常需要辅助能量存储(例如电池或超级电容器)来提供此类帮助。本文提出使用MicroTurbine(MT)作为基于电池或超级电容器的能量存储的替代方案,不仅可以满足负载的瞬态部分,还可以满足稳态。 PEMFC和MT的正确,电气和热集成对于其成功实施和行业认可至关重要。本文着重于系统的电气集成,并提出了用于自主和并网模式下负载跟踪操作的简单控制策略。控制器是使用常规环路增益技术设计的。 PEMFC和MT均在MATLAB / Simulink环境中建模。仿真结果验证了两种操作模式下设计的控制器的有效性。

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