ВЛИЯНИЕ РЕГУЛЯТОРА СИНТЕТИЧЕСКОЙ ИНЕРЦИИ НА ИЗМЕНЕНИЯ ЧАСТОТЫ ЭЛЕКТРОЭНЕРГЕТИЧЕСКИХ СИСТЕМ В ПЕРЕХОДНЫХ РЕЖИМАХ

T. F. Makhmudov
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Abstract

The article is devoted to the use of wind power plants as sources of synthetic inertia in order to increase the stability margins and damping frequency fluctuations. The purpose of this study is to establish the possibility of using the synthetic inertia controller of wind turbines to reduce the amplitudes of frequency fluctuations in transient conditions. One consequence of integrating a large number of wind farms is to reduce the amount of kinetic energy (inertia) available to operate the system. If the system inertia becomes too low, it can compromise frequency stability when large generating units fail. The smaller the moment of inertia in the system, the greater the frequency fluctuations occur after the active power balance is disturbed. A regulator of synthetic inertia of a wind power plant has been obtained, which makes it possible to reduce frequency dips during transient conditions. Recommendations are made regarding the choice of gain factors for the inertia controller. A control model for wind turbines with a synthetic inertia controller is presented. On the example of a test circuit of an electric power system, modeling of disturbances in the form of a load surge and a short circuit was carried out. As a result, the characteristics of the change in the frequency of the electric power system in the absence and presence of a wind power plant are given.
合成惯性调节器对过渡状态中电力系统频率变化的影响
本文致力于利用风力发电厂作为合成惯性源,以增加稳定裕度和阻尼频率波动。本研究的目的是建立利用风力发电机的综合惯性控制器来降低暂态条件下频率波动幅度的可能性。整合大量风力发电场的一个后果是减少了系统运行所需的动能(惯性)。如果系统惯性过低,当大型发电机组发生故障时,可能会影响频率稳定性。系统的转动惯量越小,有功平衡被扰动后的频率波动越大。本文给出了风电场综合惯性调节器,使其在瞬态状态下减少频率下降成为可能。对惯性控制器增益因子的选择提出了建议。提出了一种基于综合惯性控制器的风力发电机组控制模型。以某电力系统测试电路为例,对负载浪涌和短路形式的干扰进行了建模。结果,给出了无风电场和有风电场时电力系统频率变化的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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