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Design of a robust controller for DC/DC converter-electrolyzer systems supplied by μWECSs subject to highly fluctuating wind speed

机译:由μWECSS提供的DC / DC转换器 - 电解槽系统的鲁棒控制器设计经受高度波动的风速

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A buck-based, isolated, high-voltage-ratio DC/DC converter that allows supplying a proton exchange membrane (PEM) electrolyzer from a micro-wind energy conversion system (μWECS) has been recently presented. It exhibits low ripple at the switching frequency on the output voltage and current and represents an attractive solution for low-cost hydrogen production. In this paper, a more accurate mathematical model of such a converter is derived and discussed. Then, a model-based robust controller is designed in the frequency domain using the Internal Model Control structure and in the context of H_2/H_∞ optimal control. The controller satisfies the condition of robust stability and behavior, i.e., it guarantees stability and the desired behavior in the presence of parametric variations and unmodeled dynamics. In particular, the robustness in the presence of variations of DC-link voltage and buck input inductance is verified from the theoretical point of view. The validation of the controller is performed by integrating it into a detailed switching model of the DC/DC converter, which is implemented on a widely used circuit-oriented simulator. Good results are obtained in terms of dynamic and steady-state behavior, even in the presence of the above variations. A comparison is also carried out with the results obtained using an integral controller designed on the basis of the above mathematical model. Such a comparison shows the superiority of the robust controller over the integral controller in all the operating conditions, especially when the DC-link voltage is subject to significant variations and is affected by a non-negligible low-frequency ripple due to the presence of the diode rectifier at the output of the μWECS.
机译:最近介绍了一种基于降压的,隔离的,高压比DC / DC转换器,允许从微风能量转换系统(μWEC)提供质子交换膜(PEM)电解槽。它在输出电压和电流的开关频率下表现出低纹波,并且代表了用于低成本氢生产的有吸引力的解决方案。在本文中,推导出和讨论这种转换器的更准确的数学模型。然后,使用内部模型控制结构和H_2 /H_∞最佳控制的频域设计了一种基于模型的鲁棒控制器。控制器满足稳定稳定性和行为的条件,即,在存在参数变化和未拼接动态的情况下,它保证稳定性和所需的行为。特别地,从理论的观点来看,验证了直流链路电压和降压输入电感的变化存在的鲁棒性。通过将其集成到DC / DC转换器的详细切换模型中来执行控制器的验证,该模型在广泛使用的电路取向模拟器上实现。即使在存在上述变化的情况下,也可以在动态和稳态行为方面获得良好的结果。还通过使用基于上述数学模型设计的积分控制器获得的结果进行比较。这样的比较显示了所有操作条件中整体控制器上的鲁棒控制器的优越性,尤其是当DC-LINK电压受到显着变化并且由于存在而受到不可忽略的低频纹波的影响二极管整流器在μWEC的输出处。

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