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Directional Derivative-Based Transient Stability-Constrained Optimal Power Flow

机译:基于方向导数的暂态稳定约束最优潮流

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摘要

This paper proposes a novel active power redispatch sequential approach to solve the transient stability-constrained optimal power flow (TSC-OPF) problem for the preventive control of transient stability. Based on an independent transient stability assessment of the power system for a given contingency scenario, two proposed power redispatch constraints are formulated and embedded into a conventional OPF formulation. Since these two new constraints only depend on steady-state variables, the dimension of the resulting TSC-OPF model is similar to that of a conventional OPF model and can be solved by standard optimization methods to perform a nonheuristic active power redispatch. The stabilization process is performed by sequentially solving the optimization and the transient stability problems until a suitable generation dispatch that provides a transiently stable equilibrium point is assessed. The validity and the effectiveness of the proposed method are numerically demonstrated in the WSCC three-machine, nine-bus system and an equivalent model of the Mexican power system.
机译:本文提出了一种新颖的有功重分配顺序方法,以解决暂态稳定约束的最优潮流(TSC-OPF)问题,以预防暂态稳定。在给定的应急情况下,基于对电力系统的独立暂态稳定性评估,制定了两个拟议的电力重新分配约束条件,并将其嵌入常规OPF公式中。由于这两个新约束仅取决于稳态变量,因此生成的TSC-OPF模型的尺寸与常规OPF模型的尺寸相似,并且可以通过标准优化方法进行求解以执行非启发式有功功率重新分配。通过依次解决优化问题和暂态稳定问题来执行稳定过程,直到评估出提供暂态稳定平衡点的合适发电调度为止。在WSCC三机,九客车系统和墨西哥电力系统的等效模型中,数值证明了该方法的有效性和有效性。

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