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An analysis of the effects and dependency of wind power penetration on system frequency regulation

机译:风电渗透对系统频率调节的影响和依赖性分析

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Summary form only given: The integration of renewable energy sources into power systems has gathered significant momentum globally because of its unlimited supply and environmental benefits. Within the portfolio of renewable energy, wind power is expected to have a soaring growth rate in the coming years. Despite its well known benefits, wind power poses several challenges in grid integration. The inherent intermittent and non-dispatchable features of wind power not only inject additional fluctuations to the already variable nature of frequency deviation, they also decrease frequency stability by reducing the inertia and the regulation capability. This paper closely examines these effects as well as the effect on tie-line flows and area control error, which causes a larger and longer frequency deviation in the integrated system. Further, the effect of wind power on frequency regulation capability at different penetration levels is also examined. The analytical and simulation results presented here provide some guidance on determining maximum wind power penetration level given a frequency deviation limit.
机译:仅给出摘要形式:由于可再生能源的无限供应和环境效益,将可再生能源整合到电力系统中已在全球范围内取得了巨大的势头。在可再生能源的投资范围内,预计风力发电在未来几年将以迅猛的速度增长。尽管风力发电具有众所周知的好处,但它在并网发电方面还是带来了一些挑战。风力发电固有的间歇性和不可分配性不仅会给已经可变的频率偏差特性注入额外的波动,还会通过降低惯性和调节能力来降低频率稳定性。本文仔细研究了这些影响以及对联络线流量和面积控制误差的影响,这些影响在集成系统中引起更大和更长的频率偏差。此外,还研究了风力对不同穿透水平下频率调节能力的影响。在给出频率偏差极限的情况下,此处给出的分析和仿真结果为确定最大风力渗透水平提供了一些指导。

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