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Estimation of maximum wind power penetration level to maintain an adequate frequency response in a power system

机译:估计最大风力功率穿透水平,以维持电力系统的足够频率响应

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Wind energy has an immense potential to play a vital role with conventional energy sources. Therefore, integration of wind power is increasing in many power systems. Unlike synchronous generators, modern wind farms have lack of automatic frequency support capability following a disturbance. Thus, an addition of wind power does impact the frequency response of a power system. Inadequate frequency response may occur due to presence of a large wind generation. This paper proposes a methodology for estimating the maximum wind power penetration level to ensure an adequate frequency response in a power system. Frequency nadir and rate of change of frequency after an outage of the largest generator of a power system are taken into consideration. Impact of two different wind power integration strategies (direct replacement of a synchronous generator with a wind machine and 2/3 de-commitment, 1/3 re-dispatch approach) on the maximum wind power penetration level are investigated. This paper also attempts to identify a system parameter that could most significantly influence a penetration of wind power.
机译:风能具有巨大的潜力,可以与传统的能源发挥重要作用。因此,在许多电力系统中,风力的整合正在增加。与同步发电机不同,扰动后现代风电场缺乏自动频率支持能力。因此,添加风力功率确实会影响电力系统的频率响应。由于存在大风力产生,可能发生不充分的频率响应。本文提出了一种用于估计最大风力渗透水平的方法,以确保电力系统中的足够频率响应。考虑了电力系统最大发电机的中断后频率Nadir和频率变化率。调查了两个不同风力集成策略的影响(直接更换了同步发电机,带有风机的同步发电机和2/3去承诺,1/3重新调度方法)在最大风力渗透水平上进行了影响。本文还试图识别系统参数,这些参数最大限度地影响风能的渗透。

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