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Characteristic Analysis of Primary Frequency Modulation in Power System under Different Types of Active Disturbance

机译:不同类型主动干扰下电力系统初步调制的特征分析

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With the large scale accessing of wind power to the grid, the power system will withstand different types of active disturbances. In other words, in addition to the traditional step change of the active power caused by the generator outages or sudden change of load, the random fluctuation of the wind power will also cause a distinct deviation of the system frequency. Since different types of disturbances will cause different frequency response characteristics, it inevitably puts forward higher requirements for the optimal configuration of the primary frequency modulation capacity and governor parameters to synchronous generators in the system. For this reason, based on the electromechanical dynamic model which equivalent to the single machine, this paper analyzes the different characteristics of the primary frequency modulation under the step type likes generator outages or sudden change of load and the sinusoidal form likes wind power fluctuation. At the same time, the simulation results of the IEEE 3-machine 9-bus system based on the DIgSILENT further show that the governor aimed at single type active disturbance can not better adapt to other types. This paper will lay the foundation for the primary frequency optimizing configuration of the power system which considering multiple types of active disturbances.
机译:随着风电向电网的大规模访问,电力系统将承受不同类型的主动扰动。换句话说,除了由发电机中断或突然变化负载引起的动力的传统步骤改变之外,风电的随机波动也将导致系统频率的不同偏差。由于不同类型的干扰将导致不同的频率响应特性,因此它不可避免地提出了对系统中的同步发电机的初级频率调制容量和调速器参数的最佳配置的更高要求。出于这个原因,基于相当于单机的机电动态模型,本文分析了阶梯类型下初级频率调制的不同特性,喜欢发电机的中断或突然变化负荷和正弦形式喜欢风电波动。同时,基于Digsilent的IEEE 3机9-Bus系统的仿真结果进一步表明了瞄准单型主动干扰的调速器不能更好地适应其他类型。本文将为考虑多种类型的主动扰动的电力系统的初级频率优化配置奠定基础。

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