扭矩辅助压缩空气储能液压风力传动系统

Moyuan Chen, Sofia M. Santos, A. Izadian
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引用次数: 4

摘要

压缩空气储能(CAES)作为一种流行的风能存储技术,在数学上与液压风力发电系统相结合。利用液压机械作为原动机来获得消除昂贵和沉重的齿轮箱的好处。本课题旨在提高600kW液压风力发电系统的输电性能,同时保持稳定的发电频率。仿真结果表明,压缩空气储能的集成提高了电力输送质量,在变风速条件下,可以在保持频率的情况下输送最大的电力需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Torque-assisting Compressed Air Energy Storage hydraulic wind drivetrains
In this paper, Compressed Air Energy Storage (CAES) as a popular technology for wind energy storage, is mathematically integrated with a hydraulic wind power system. Hydraulic machinery as prime-movers is utilized to gain the benefit of eliminating costly and heavy gearboxes. The goal of this work is to improve the power delivery performance while maintaining a stable frequency generation in a 600kW hydraulic wind power system. Simulation results demonstrate that the integration of compressed air energy storage has improved the quality of power delivery such that the maximum power demand can be delivered while maintaining the frequency under variable wind speeds.
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