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Implementation of primary frequency regulation on fully rated wind turbine generators

机译:全额定风力涡轮发电机初级频率调节的实施

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The increased integration of wind generation via high power converters imposses numerous gauntlet to the management and control of modern power systems. One of them is caused by the decoupling effect between the power sources from the AC grid. It negatively impacts the system frequency response of modern power systems. This paper proposes a controller to enable the primary frequency regulation on fully rated wind turbine generators. The proposed controller is designed to enable primary frequency response mimiquing the classical syncrhonous generator controles. It includes a droop control and an other to enable the inertia response. Simulations on a test system are used to examine the frequency response provided by the prioposed strategy. The most important contributions of this paper is to demonstrate there is an actual limit value of the synthetic inertia gain that can be used in the controllers and that it is dependent on the system frequency noise.
机译:通过高功率转换器的风力产生的增加的纳入众多手段对现代电力系统的管理和控制。其中一个是由来自AC电网之间的电源之间的去耦效应引起的。它对现代电力系统的系统频率响应产生负面影响。本文提出了一种控制器,以使全额定风力涡轮发电机的初级频率调节能够实现。所提出的控制器旨在实现初级频率响应,以模拟经典的Syncronous发电机控制。它包括下垂控制和另一个,以实现惯性响应。测试系统的模拟用于检查经过修整策略提供的频率响应。本文最重要的贡献是证明了可以在控制器中使用的合成惯性增益的实际限制值,并且它取决于系统频率噪声。

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