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Optimal re-dispatch of an isolated system considering transient stability constraints

机译:考虑暂态稳定性约束的隔离系统的最优重调度

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In this paper, an algorithm for calculating the optimal operation of a system with different load states and fault clearing times is proposed. The algorithm simultaneously considers both economic and stability constraints. The proposed formulation is evaluated on the Majorca and Minorca islands power system, which is a small, isolated system with low inertia. A conventional optimisation tool is used to solve the optimisation problem. The results show the efficiency of the proposed approach and the advantages of including stability restrictions in the optimisation analysis. The application of the algorithm to different operation points is used to evaluate the cost of assuring the transient stability after a severe fault in the transmission grid. The analysis of different fault clearing times is used to estimate the economic savings of implementing a faster protection system.
机译:提出了一种计算负载状态和故障清除时间不同的系统最优运行的算法。该算法同时考虑经济和稳定性约束。拟议的公式在马略卡岛和梅诺卡岛的电力系统上进行了评估,该系统是一个小型,孤立的系统,具有较低的惯性。使用常规的优化工具来解决优化问题。结果表明了该方法的有效性以及在优化分析中包括稳定性约束的优势。该算法在不同工作点上的应用被用来评估在输电电网发生严重故障后确保暂态稳定的成本。通过分析不同的故障清除时间来估算实施更快的保护系统所节省的经济成本。

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