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Penetration impact of wind farms equipped with frequency variations ride through algorithm on power system frequency response

机译:穿越频率变化的风电场穿透算法对电力系统频率响应的影响

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Focus of power system engineers is currently directed to the impact of wind power on system frequency. Research efforts concentrate on the ability of wind farms to contribute in the frequency droop events by injecting active power to the grid. This paper presents a detailed analysis for the effect of wind farm connection to a certain power system on the system frequency response. Most of wind farm parameters were considered, namely, the actual wind speeds, wake effects inside the wind farm, the different arrangements of wind turbines inside the wind farm and pitch control mechanism. Moreover, the major data of a h power system were included; different conventional generation technologies and their suitable speed governors. In addition, instant dynamic load variations were implemented. Five case studies were conducted through this system to test the system frequency attitude during normal operation and in case of sudden and large load changes. Three basic values are used to estimate the mentioned impact; the time needed to reach the safe margin after a certain droop, the RMS value of frequency deviation after the fault initiation by a given fixed time span and the maximum frequency drop for each event. All the previously stated studies are performed using MATLAB and Simulink simulations depending on real wind speeds data.
机译:当前,电力系统工程师的重点是风力对系统频率的影响。研究工作集中在风电场通过向电网注入有功功率来促进频率下降事件的能力上。本文针对风电场连接到某个电力系统对系统频率响应的影响进行了详细分析。考虑了大多数风电场参数,即实际风速,风电场内部的尾流效应,风电场内部风力涡轮机的不同布置以及变桨控制机制。此外,还包括了h电力系统的主要数据;不同的常规发电技术及其合适的调速器。此外,还实现了即时动态负载变化。通过该系统进行了五个案例研究,以测试正常运行期间以及负载突然和大变化情况下的系统频率姿态。三个基本值用于估计所提到的影响;在一定的下垂后达到安全裕度所需的时间,故障启动后给定固定时间跨度的频率偏差的RMS值以及每个事件的最大频率下降。所有先前所述的研究均根据实际风速数据使用MATLAB和Simulink仿真进行。

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