大型电力系统中双馈感应发电机穿透量增加所引起的功率振荡的补充控制

D. Gautam, V. Vittal, R. Ayyanar, T. Harbour
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引用次数: 32

摘要

本文研究了双馈感应发电机(DFIGs)渗透增加对大型互联电力系统机电振荡模式的影响。本文提出了一种控制机制,旨在设计类似于同步电机的电力系统稳定器(PSS)。风力发电机输出的功率作为PSS的输入。有功功率指令按与电力系统振荡相反的相位调制,并提供给DFIG的有功功率控制回路。一个附加的控制模块与DFIG终端电压作为PSS输入信号被馈送到无功功率控制回路。通过特征值分析验证了该机制对提高临界模态阻尼的作用。该工作还比较了两种不同的控制机制,可用于阻尼低频区域间振荡模式。后者的思想是根据电网频率的变化来调整DFIG的转矩设定点。所提出的技术在代表美国中西部互连部分的大型测试系统上进行了测试。
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Supplementary control for damping power oscillations due to increased penetration of doubly fed induction generators in large power systems
This work investigates the impact of increased penetration of doubly fed induction generators (DFIGs) on electromechanical modes of oscillations of a large interconnected power system. The work proposes a control mechanism aimed at designing the power system stabilizer (PSS) for a DFIG similar to the PSS of synchronous machines. The wind generator power output is taken as input to the PSS. The active power command is modulated in phase opposition to the power system oscillation and is fed to the active power control loop of the DFIG. An additional control block with the DFIG terminal voltage as the PSS input signal is fed to the reactive power control loop. The mechanism serves the purpose of improving the damping of critical mode which is validated by eigenvalue analysis. The work also compares two different control mechanisms that can be employed for damping low frequency inter area modes of oscillations. With the latter based on the idea of modifying the torque set point of the DFIG for changes in grid frequency. The proposed technique is tested on a large test system representing the Midwestern portion of the U.S. interconnection.
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