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A Dynamic Theory-Based Method for Computing Unstable Equilibrium Points of Power Systems

机译:一种基于动态理论的电力系统不稳定均衡点的方法

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In this paper, a new theory-based dynamic method for computing unstable equilibrium points is proposed. This dynamic method is a combination of a dynamic transformation method and a trajectory-unified method for the computation of unstable equilibrium points (UEPs) of power system models. The transformation method converts a UEP into a stable equilibrium point (SEP) to expand its convergence region by creating a quotient gradient system (QGS). The resulting SEP is then calculated using a quasi-Newton form of the pseudo-transient continuation method that exploits the structure of the quotient gradient system for fast and reliable computation. It is shown that the proposed QGS-based can have local q-superlinear or even local quadratic convergence under certain conditions. These conditions for convergence are presented and analyzed. The proposed method is tested on the WSCC 9-bus system and the IEEE 145-bus 50-machine system. The results show that the proposed method gives accurate results, is sufficiently fast, numerically stable, and enlarges the convergence region of computed UEPs.
机译:本文提出了一种基于新的基于理论的计算不稳定平衡点的动态方法。该动态方法是动态变换方法和轨迹统一方法的组合,用于计算电力系统模型的不稳定平衡点(UEP)。转换方法将UEP转换为稳定的平衡点(SEP)以通过创建商梯度系统(QGS)来扩展其收敛区域。然后使用伪瞬态连续方法的伪换牛顿形式计算得到的SEP,该伪瞬态连续方法利用商梯度系统的结构进行快速可靠的计算。结果表明,基于QGS的基于QGS可以在某些条件下具有局部Q超连线甚至局部二次收敛。提出和分析了这些收敛条件。所提出的方法在WSCC 9总线系统和IEEE 145总线50机器系统上进行测试。结果表明,该方法提供了准确的结果,是足够快的,数值稳定的,并扩大计算的UEP的收敛区。

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