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首页> 外文期刊>European transactions on electrical power engineering >A pole placement approach for multi-band power system stabilizer tuning
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A pole placement approach for multi-band power system stabilizer tuning

机译:多频电力系统稳定器调谐的极点放置方法

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Low-frequency electromechanical oscillations is a topic of great concern in power system operation. Undamped oscillations reduce the power transfer capacity and can lead the system to blackouts. Since the 70s, synchronous generators operate with power system stabilizers that add damping torque to oscillations through the excitation system control. These controllers can have either a conventional fixed structure, composed by stages of gain and phase compensation, or a multi-band structure (MB-PSS), composed by three bands that correspond to a specific frequency range (low, intermediate and high frequency). In the MB-PSS structure, each band consists of two branches based on differential filters (with a gain stage and lead-lag blocks). This paper presents an approach based on the Newton-Raphson method for tuning MB-PSS for power systems taking into consideration several operating conditions to ensure robustness. The approach adjusts the controller's gains to place a set of poles into a region in the complex plane with a desired damping ratio. Firstly, the method is applied to the well-known single-machine infinite bus system represented by the Heffron-Phillips model. Secondly, an application to the multimachine South-Southeastern Brazilian power system is discussed considering different operating conditions. The convergence of the proposed approach is evaluated regarding the initial conditions, the desired damping ratio, and the set of monitored poles. Linear and nonlinear time-domain simulations validate the designed controllers. Finally, it is shown that the computational effort required by the proposed approach is lower than the one required by a class of methods widely reported in the literature for MB-PSS design.
机译:低频机电振荡是电力系统操作中非常关注的主题。无透明的振荡降低了电力传输能力,可以引导系统停电。自70s以来,同步发电机通过电力系统稳定器操作,通过激励系统控制将阻尼扭矩添加到振荡。这些控制器可以具有由增益和相位补偿阶段组成的传统固定结构,或者由对应于特定频率范围(低,中间和高频)的三个带组成的多频带结构(MB-PS)组成。在MB-PSS结构中,每个频带由基于差分滤波器的两个分支组成(具有增益级和引线滞后块)。本文提出了一种基于Newton-Raphson方法,用于调整电力系统MB-PSS的方法,考虑到几种操作条件,以确保鲁棒性。该方法调整控制器的增益,将一组极点放入具有所需阻尼比的复平面中的区域中。首先,该方法应用于由Heffron-Phillips模型表示的公知的单机无限总线系统。其次,考虑到不同的运行条件,讨论了对万制南南部的巴西电力系统的应用。关于初始条件,所需阻尼比和被监测极组的初始条件评估所提出的方法的收敛性。线性和非线性时域模拟验证设计的控制器。最后,表明所提出的方法所需的计算工作低于在文献中广泛报道的MB-PSS设计中的一类方法所需的计算工作。

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