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Control of a grid-assisted wind-powered hydrogen production system

机译:电网辅助风力制氢系统的控制

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This paper deals with the control of a H_2 production system supplied by wind power and assisted by the grid. The system architecture consists of a pitch-controlled wind turbine coupled through a diode rectifier to an alkaline electrolyzer, which in turn is connected to the electric grid through a fully-controlled bidirectional electronic converter. A control strategy for the electronic converter is proposed to regulate the electrolyzer current at its rated value. Thus, H_2 production efficiency is optimized despite wind power and temperature variability. Control design is based on sliding mode techniques, which are particularly appropriate to control fast switching devices and exhibit strong robustness properties. Additionally, in high wind speeds, a pitch control loop is activated to limit the wind power capture below admissible values.
机译:本文研究由风能提供并由电网辅助的H_2生产系统的控制。该系统架构包括一个变桨距控制的风力涡轮机,该风力涡轮机通过一个二极管整流器耦合到一个碱性电解槽,该碱性电解槽又通过一个完全受控的双向电子转换器与电网连接。提出了用于电子转换器的控制策略以将电解器电流调节到其额定值。因此,不管风力和温度如何变化,H_2的生产效率都是最佳的。控制设计基于滑模技术,特别适用于控制快速开关设备并具有强大的鲁棒性。此外,在高风速时,将激活变桨控制回路,以将捕获的风能限制在允许值以下。

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