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Transient stability assessment for power system via Lur'e type Lyapunov function

机译:LUR'E型Lyapunov函数电力系统的瞬态稳定性评估

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This work presents a transient stability assessment by constructing a Lyapunov function for multimachine power system considering AVR control system represented in the third order transfer function. The proposed Lur'e type Lyapunov function is constructed as a quadratic form of state variables and an integral term which satisfies the symmetric condition and the sector condition, and determined by solving the linear matrix inequality (LMI) derived from the Lyapunov stability theorem. To verify the proposed Lur'e type Lyapunov function, the transient stability assessment for 10-machine test system including AVR control system is shown. The critical clearing times given by the proposed Lyapunov function are compared with those obtained by the numerical integration method, and they are shown to be practical.
机译:考虑到在三阶传递函数中表示的AVR控制系统,通过构建用于多机动力系统的Lyapunov函数来提出瞬态稳定性评估。所提出的LUR'E型Lyapunov函数被构造为状态变量的二次形式和满足对称条件和扇区状况的积分项,并通过求解来自Lyapunov稳定定理的线性矩阵不等式(LMI)来确定。为了验证所提出的LUR'E型Lyapunov功能,显示了包括AVR控制系统的10台机器测试系统的瞬态稳定性评估。将所提出的Lyapunov函数给出的关键清算时间与数值积分法获得的临界清算时间进行比较,并且它们被证明是实用的。

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