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Optimal Generator Start-Up Strategy for Bulk Power System Restoration

机译:大容量电力系统恢复的最佳发电机启动策略

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摘要

During system restoration, it is critical to utilize the available black-start (BS) units to provide cranking power to non-black-start (NBS) units in such a way that the overall system generation capability will be maximized. The corresponding optimization problem is combinatorial with complex practical constraints that can vary with time. This paper provides a new formulation of generator start-up sequencing as a mixed integer linear programming (MILP) problem. The linear formulation leads to an optimal solution to this important problem that clearly outperforms heuristic or enumerative techniques in quality of solutions or computational speed. The proposed generator start-up strategy is intended to provide an initial starting sequence of all BS or NBS units. The method can provide updates on the system MW generation capability as the restoration process progresses. The IEEE 39-Bus system, American Electric Power (AEP), and Entergy test cases are used for validation of the generation capability optimization. Simulation results demonstrate that the proposed MILP-based generator start-up sequencing algorithm is highly efficient.
机译:在系统恢复期间,至关重要的是利用可用的黑启动(BS)单元为非黑启动(NBS)单元提供启动动力,以使整体系统生成能力最大化。相应的优化问题与复杂的实际约束条件组合在一起,这些约束条件可能会随时间而变化。本文为混合整数线性规划(MILP)问题提供了一种发电机启动排序的新公式。线性公式可为这一重要问题提供最佳解决方案,该解决方案在解决方案质量或计算速度方面明显优于启发式或枚举技术。提出的发电机启动策略旨在提供所有BS或NBS单元的初始启动顺序。随着恢复过程的进行,该方法可以提供有关系统兆瓦发电能力的更新。 IEEE 39总线系统,美国电力(AEP)和Entergy测试用例用于验证发电能力优化。仿真结果表明,所提出的基于MILP的发电机启动排序算法是高效的。

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