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Fast Assessment of Frequency Response of Cold Load Pickup in Power System Restoration

机译:电力系统恢复中冷负荷启动频率响应的快速评估

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In this paper, we introduce an approach for a fast assessment of the dynamic characteristics of system frequency during the period of cold load pickup following a large-scale blackout. The approach is developed based on a load model and a model of generation control system: the load model considers the unique time-dependent characteristic of inrush power surges during the period of cold load pickup, while the model of generation control system mimics the characteristics of various governors that are crucial to the determination of the key variables including initial rate of frequency change, frequency nadir and settling frequency. With the proposed linearization and estimation methods, the model of generation control system can be quickly constructed to offer a great amount of flexibility and simplicity for the study of the impact of cold load on frequency response. The proposed approach allows system operators to quickly evaluate many different options for system restoration. The application of the proposed approach is demonstrated in a case study based on the IEEE 39-bus system. The differences between the results obtained using the proposed approach and those obtained from complete PSS/E simulation are very small, which suggests that the linearized model of generation control system is fast, and accurate enough to address the major concerns of cold load pickup in system restoration.
机译:在本文中,我们介绍了一种在大规模停电后快速评估冷负荷启动期间系统频率动态特性的方法。该方法是基于负荷模型和发电控制系统模型开发的:负荷模型考虑了冷负荷拾取期间涌入电涌的独特时变特性,而发电控制系统模型则模仿了对确定关键变量至关重要的各种调速器,包括初始频率变化率,最低频率和稳定频率。利用所提出的线性化和估计方法,可以快速构建发电控制系统模型,从而为研究冷负荷对频率响应的影响提供极大的灵活性和简便性。所提出的方法允许系统操作员快速评估许多不同的系统还原选项。在基于IEEE 39总线系统的案例研究中证明了该方法的应用。使用建议的方法获得的结果与通过完整的PSS / E仿真获得的结果之间的差异很小,这表明发电控制系统的线性化模型快速,准确,足以解决系统中冷负荷拾取的主要问题恢复。

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