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Power system supplementary damping controllers in the presence of saturation

机译:存在饱和时的电力系统辅助阻尼控制器

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This paper presents the analysis and a method to design supplementary damping controllers (SDCs) for synchronous generators considering the effects of saturation limits. Usually such saturations of control signals are imposed in order to enforce practical limitations such as component ratings. However, to guarantee the stability in the presence of saturation limits, the state trajectories must remain inside the domain of attraction (DA). In this paper, the domain of attraction of a single-machine infinite-bus (SMIB) power system with saturation nonlinearity is estimated and compared with the exact description of the null controllable region. Then, state-feedback controllers are designed to enlarge the DA. Our analysis shows that nonlinear effects of saturation should be considered to guarantee stability and satisfactory performance. Simulation results on a detailed nonlinear model of a synchronous generator indicate that the DA enlarges with the proposed controller. The results also indicate that Critical Clearing Time (CCT) and damping of the system with saturation can be improved by the proposed method.
机译:本文介绍了分析和设计一种考虑饱和极限影响的同步发电机辅助阻尼控制器(SDC)的方法。通常,施加这样的控制信号饱和度以实施实际的限制,例如组件额定值。但是,为了保证存在饱和极限时的稳定性,状态轨迹必须保留在吸引域(DA)内。本文对具有饱和非线性的单机无穷大(SMIB)电力系统的吸引域进行了估计,并将其与零可控区域的精确描述进行了比较。然后,设计状态反馈控制器来扩大DA。我们的分析表明,应考虑饱和度的非线性影响,以确保稳定性和令人满意的性能。在详细的同步发电机非线性模型上的仿真结果表明,所提出的控制器使DA增大。结果还表明,该方法可以改善临界饱和时间(CCT)和饱和系统的阻尼。

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