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Dispatchable power from DFIG based wind-power system with integrated energy storage

机译:来自基于DFIG的风力发电系统的可分配电力,具有集成的能量存储

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With increasing penetration of wind power, there is rising need to manage its intermittency. This paper explores the control and operational aspects of integrating a short and long-term storage mix, consisting of a fuel-cell, an elcetrolyzer and an ultracapacitor, into the double-fed induction generator based wind-power system, making it dispatchable. The fuel-cell/electrolyzer is employed to provide long-term energy balance by utilizing H2 as medium, whereas the ultracapacitor is employed as a buffer storage for the transient compensation. The control scheme enables the integrated system to operate seamlessly in islanded and grid-connected modes, fulfilling the operational requirements. System configuration is proposed, control scheme is designed, and the detailed dynamic modeling is developed for each component of the system. Expected behaviors during the sudden load change and wind variations are observed by mathematical simulation. Finally, the results of the analysis are summarized with their applicability to real system and the limitation/further scope are indicated.
机译:随着风能渗透的增加,对管理其间断性的需求也越来越高。本文探讨了将由燃料电池,电化学分析仪和超级电容器组成的短期和长期存储组合集成到基于双馈感应发电机的风力发电系统中的控制和操作方面,从而使其可调度。燃料电池/电解槽通过利用H 2 作为介质来提供长期的能量平衡,而超级电容器则用作瞬态补偿的缓冲存储器。该控制方案使集成系统可以在孤岛和并网模式下无缝运行,从而满足运行要求。提出了系统配置,设计了控制方案,并为系统的每个组件开发了详细的动态建模。通过数学模拟可以观察到突然的负载变化和风速变化期间的预期行为。最后,总结了分析结果及其在实际系统中的适用性,并指出了其局限性/进一步的范围。

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