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Application of electrolyzer system to enhance frequency stabilization effect of microturbine in a microgrid system

机译:电解系统在微电网系统中提高微机频率稳定效果的应用

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It is well known that the power output of microturbine can be controlled to compensate for load change and alleviate the system frequency fluctuations. Nevertheless, the microturbine may not adequately compensate rapid load change due to its slow dynamic response. Moreover, when the intermittent power generations from wind power and photovoltaic are integrated into the system, they may cause severe frequency fluctuation. In order to study the fast dynamic response, this paper applies electrolyzer system to absorb these power fluctuations and enhance the frequency control effect of microturbine in the microgrid system. The robust coordinated controller of electrolyzer and microturbine for frequency stabilization is designed based on a fixed-structure H_∞ loop shaping control. Simulation results exhibit the robustness and stabilizing effects of the proposed coordinated electrolyzer and microturbine controllers against system parameters variation and various operating conditions.
机译:众所周知,可以控制微型涡轮机的功率输出,以补偿负载变化并减轻系统频率波动。然而,由于其缓慢的动态响应,微型涡轮机可能无法充分补偿快速的负载变化。此外,将风力发电和光伏发电的间歇性发电集成到系统中时,可能会导致严重的频率波动。为了研究快速的动态响应,本文应用电解系统吸收了这些功率波动,并在微电网系统中增强了微型涡轮机的频率控制效果。基于固定结构的H_∞回路整形控制,设计了用于频率稳定的电解器和微型涡轮机的鲁棒协调控制器。仿真结果显示了所提出的电解器和微型涡轮机控制器针对系统参数变化和各种运行条件的鲁棒性和稳定效果。

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