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Wind turbine-energy storage control system for delivering constant demand power shared by DFIGs through droop characteristics

机译:风力涡轮机 - 能量存储控制系统通过DROOP特性提供DFIG共享的恒定需求功率

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This paper investigates embedding Energy Storage (ES) with multiple wind turbines in order to deliver to the grid a smooth and constant power as demanded by the system operator. The demand power is shared by DFIGs proportional to their ratings utilizing classical voltage and frequency droop characteristics. The paper addresses the system control methodologies for delivering constant power to the grid whilst also ensuring good system stability and good utilization of the inherent inertial energy storage capacity of the turbine. A wind farm consisting of DFIG generators feeding an HVDC link is chosen for illustration, but the methods can be applied to many technologies. The simulations, which are done by PSCAD/EMTDC, demonstrate that the total power delivered by the wind farm is constant and equal to the total demand power while each DFIG-ES delivers a constant power proportional to its rating determined by droop characteristics. The calculation of the size of ES (power and energy) for a deterministic wind statistics is beyond the scope of this paper and will be explained in a future paper.
机译:本文调查了具有多个风力涡轮机的嵌入能量存储(ES),以便提供给系统操作员所需的光滑恒定的功率。需求电力由与频率下降特性的额定值成比例的DFIG共用。本文解决了系统控制方法,用于向电网提供恒定功率,同时还确保良好的系统稳定性和良好利用涡轮机的内在惯性储存能力。选择由喂养HVDC链路的DFIG发电机组成的风电场以用于说明,但该方法可以应用于许多技术。由PSCAD / EMTDC完成的模拟表明,风电场输送的总功率是恒定的,而等于总需求功率,而每个DFIG-es通过下垂特性确定的额定值成比例。确定性风统计学的ES(力量和能量)的规模超出了本文的范围,并将在未来的纸张中解释。

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