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Active Damping of Power Oscillations Following Frequency Changes in Low Inertia Power Systems

机译:低惯性电力系统中频率变化引起的功率振荡的主动阻尼

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The absolute requirement to increase the amount of energy generation from renewable sources e.g., predominantly asynchronously connected wind turbines and photovoltaic installations, may in practice during transient events (where frequency changes are examined) excite oscillatory response of the power output of large grid connected synchronous generators. The response of such generators must be controlled either by varying the applied torque of a turbine or by altering the electromagnetic torque in the airgap. Choosing the latter, the adequacy of a voltage regulator, particularly that of the embedded power system stabilizer (PSS) circuit, is investigated using the IEEE PSS1A model for the automatic voltage regulator of a synchronous generator driven by a gas turbine. The response is obtained via closed form analytic solutions for both small (linear) and large (nonlinear) scale transient events in the energy grid system. In tandem with the analytical study, the behavior simulated with a computer model from MATLAB-SimPowerSystems is reviewed.
机译:在实践中,在瞬态事件(检查频率变化)期间,增加从可再生资源(主要是异步连接的风力涡轮机和光伏装置)产生的能量的绝对要求可能会激发大型并网同步发电机的功率输出产生振荡响应。这种发电机的响应必须通过改变涡轮机施加的转矩或通过改变气隙中的电磁转矩来控制。选择后者,使用IEEE PSS1A模型研究由燃气轮机驱动的同步发电机的自动电压调节器,以研究电压调节器的适用性,特别是嵌入式电源系统稳定器(PSS)电路的适用性。通过针对能量网格系统中小(线性)和大(非线性)规模瞬态事件的闭合形式解析解获得响应。与分析研究相结合,对使用MATLAB-SimPowerSystems的计算机模型模拟的行为进行了回顾。

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