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Dynamics and Collapse in a Power System Model with Voltage Variation: The Damping Effect

机译:电压变化的电力系统模型中的动力学和崩溃:阻尼效应

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摘要

Complex nonlinear phenomena are investigated in a basic power system model of the single-machine-infinite-bus (SMIB) with a synchronous generator modeled by a classical third-order differential equation including both angle dynamics and voltage dynamics, the so-called flux decay equation. In contrast, for the second-order differential equation considering the angle dynamics only, it is the classical swing equation. Similarities and differences of the dynamics generated between the third-order model and the second-order one are studied. We mainly find that, for positive damping, these two models show quite similar behavior, namely, stable fixed point, stable limit cycle, and their coexistence for different parameters. However, for negative damping, the second-order system can only collapse, whereas for the third-order model, more complicated behavior may happen, such as stable fixed point, limit cycle, quasi-periodicity, and chaos. Interesting partial collapse phenomena for angle instability only and not for voltage instability are also found here, including collapse from quasi-periodicity and from chaos etc. These findings not only provide a basic physical picture for power system dynamics in the third-order model incorporating voltage dynamics, but also enable us a deeper understanding of the complex dynamical behavior and even leading to a design of oscillation damping in electric power systems.
机译:在单机无限母线(SMIB)的基本电源系统模型中,研究了复杂的非线性现象,该模型具有同步发电机,该发电机由经典的三阶微分方程(包括角度动力学和电压动力学,即磁通衰减)建模方程。相反,对于仅考虑角度动力学的二阶微分方程,它是经典的摆动方程。研究了三阶模型与二阶模型之间动力学的异同。我们主要发现,对于正阻尼,这两个模型表现出非常相似的行为,即稳定的固定点,稳定的极限环以及它们在不同参数下的共存。但是,对于负阻尼,二阶系统只能崩溃,而对于三阶模型,可能会发生更复杂的行为,例如稳定的固定点,极限环,准周期和混沌。在这里还发现了有趣的仅由于角度不稳定性而不是由于电压不稳定性引起的局部崩溃现象,包括准周期和混沌等导致的崩溃。这些发现不仅为电力系统动力学中包含电压的三阶模型提供了基本的物理图景。动力学,但也使我们对复杂的动力学行为有更深入的了解,甚至导致设计电力系统中的振荡阻尼。

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