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Novel Control Strategy for Multiple Run-of-the-River Hydro Power Plants to Provide Grid Ancillary Services (PPT)

机译:多河流水电站提供网格辅助服务(PPT)的新型控制策略

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Electricity generated by Hydropower Plants (HPPs) contributes a considerable portion of bulk electricity generation and delivers it with a low carbon footprint. In fact, HPP electricity generation provides the largest share from renewable energy resources, which includes solar and wind energy. The increasing penetration of wind and solar penetration leads to a lowered inertia in the grid and hence poses stability challenges. In recent years, breakthrough in energy storage technologies have demonstrated the economic and technical feasibility of extensive deployments in power grids. Multiple ROR HPPs if integrated with scalable, multi time-step energy storage so that the total output can be controlled. Although, the size of a single energy storage is far smaller than that of a typical reservoir, cohesively managing multiple sets of energy storage distributed in different locations is proposed. The ratings of storages and multiple ROR HPPs approximately equals the rating of a large, conventional HPP. The challenges associated with the system architecture and operation are described. Energy storage technologies such as supercapacitors, flywheels, batteries etc. can function as a dispatchable synthetic reservoir with a scalable size of energy storage will be integrated. Supercapacitors, flywheels, and battery are chosen to provide fast, medium, and slow responses to support grid requirements. Various dynamic and transient power grid conditions are simulated and performances of integrated ROR HPPs with energy storage is provided. The end goal of this research is to investigate the inertial equivalence of a large, conventional HPP with a unique set of multiple ROR HPPs and optimally rated energy storage systems.
机译:水电站(HPP)产生的电力有望有望的大量电力发电,并以低碳足迹提供它。事实上,HPP发电提供了可再生能源的最大份额,包括太阳能和风能。风和太阳能渗透的普及率越来越多地导致电网中的下降惯性,因此造成稳定性挑战。近年来,储能技术的突破表明了电网中广泛部署的经济和技术可行性。多个ROR HPP如果与可伸缩的多时阶储能集成,可以控制总输出。虽然,单个能量存储的尺寸远小于典型储存器的尺寸,但提出了在不同位置分布在不同位置的多组能量存储器的尺寸。存储的额定值和多个ROR HPP大致等于大型常规HPP的等级。描述了与系统架构和操作相关的挑战。诸如超级电容器,飞轮,电池等的能量存储技术可以作为可调度合成储层的功能,将集成可扩展的储存量。选择超级电容器,飞轮和电池,提供快速,中等和慢响应,以支持网格要求。模拟各种动态和瞬态电网条件,并提供了具有能量存储的集成ROR HPP的性能。该研究的最终目标是研究具有独特的多个ROR HPP和最佳额定的能量存储系统的大型传统HPP的惯性等价性。

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