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Fast Frequency Response Provision from Large-Scale Hydrogen Electrolyzers Considering Stack Voltage-Current Nonlinearity

机译:考虑堆叠电压 - 电流非线性的大规模氢电解器的快速频率响应提供

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This paper investigates the fast frequency response (FFR) capability of large-scale hydrogen electrolyzers (HEs) and their contribution to frequency control in low-inertia conditions, with focus on understanding the impacts of stack voltage-current (V-I) nonlinearity. We propose a HE stack model which includes a variable internal resistance to capture its V-I nonlinear behaviour. We then study the negative impacts of this nonlinearity on HE FFR capability and its mitigation solutions via proposing design specifications for the HE power-electronics interface (PEI) (DC-DC-AC) control. To do so, first we highlight the need for simultaneous stack voltage-current control in HE active power (FFR) control and propose a relevant cascaded V-I controller for stack-side converter via novel HE stack equivalencing with a capacitor. Second, we modify the DC-link voltage level in the HE PEI to avoid the stack V-I nonlinear effect. Simulation results show how the stack V-I nonlinearity might limit the HE FFR potential and how the proposed PEI controller represents an effective solution.
机译:本文研究了大规模氢电解器(HES)的快速频率响应(FFR)能力及其对低惯性条件的频率控制的贡献,重点是了解堆栈电压电流(V-1)非线性的影响。我们提出了一种他的堆栈模型,包括可变的内部电阻来捕获其V-I非线性行为。然后,我们通过提出针对HE电力 - 电子界面(PEI)(DC-DC-AC)控制的设计规范来研究这种非线性对他FFR能力及缓解解决方案的负面影响。为此,首先,我们突出了对机电(FFR)控制的同时堆叠电压控制的需要,并通过与电容器相等的新颖,提出了一种用于堆叠侧转换器的相关级联V-I控制器。其次,我们修改了HE PEI中的直流链路电压电平,以避免堆栈V-I非线性效果。仿真结果显示堆栈V-I非线性如何限制HE FFR潜力以及所提出的PEI控制器如何代表有效的解决方案。

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