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Multi-Machine Power System Stabilizer Design using Quantitative Feedback Theory

机译:基于定量反馈理论的多机电力系统稳压器设计

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摘要

Power System Stabilizers (PSSs) are used to enhance damping of power system oscillations through excitation control of synchronous generator. The objective of the PSS is to generate a stabilizing signal, which produces a damping torque component on the generator shaft. Conventional PSSs are designed with the phase compensation technique in the frequency domain and include the lead-lag blocks whose parameters are determined according to a linearized power system model. The performance of Conventional PSSs (CPSSs) depends upon the generator operating point and the system parameters, but a reasonable level of robustness can be achieved depending on the tuning method. To overcome the drawbacks of CPSS, numerous techniques have been proposed in literatures. In this paper a robust method based on Quantitative Feedback Theory (QFT) Algorithm is used for tuning the PSS parameters. The proposed QFT-PSS is evaluated at a multi machine electric power system. The simulation results clearly indicate the effectiveness and validity of the proposed method.
机译:电力系统稳定器(PSS)用于通过同步发电机的励磁控制来增强电力系统振荡的阻尼。 PSS的目的是生成稳定信号,该信号会在发电机轴上产生阻尼扭矩分量。常规PSS在频域中采用相位补偿技术进行设计,并且包括其超前-滞后块,其超前-滞后块的参数是根据线性电力系统模型确定的。常规PSS(CPSS)的性能取决于发电机的工作点和系统参数,但是取决于调整方法,可以实现合理的鲁棒性水平。为了克服CPSS的缺点,在文献中已经提出了许多技术。本文采用基于定量反馈理论(QFT)算法的鲁棒方法来调整PSS参数。拟议的QFT-PSS在多机电源系统上进行了评估。仿真结果清楚地表明了该方法的有效性和有效性。

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