论文标题

部分可观测时空混沌系统的无模型预测

Frequency Control Analysis based on Unit Commitment Schemes with High Wind Power Integration: a Spanish Isolated Power System Case Study

论文作者

Fernández-Guillamón, Ana, Sarasúa, José Ignacio, Chazarra, Manuel, Vigueras-Rodríguez, Antonio, Fernández-Muñoz, Daniel, Molina-García, Angel

论文摘要

风力电力与电网的相关整合涉及对电源系统操作的显着影响,这主要是由于旋转惯性固有损失而导致的安全性和可靠性,这是由于这种新一代单元与网格解耦的结果。在这些弱场景中,风力涡轮机对频率控制的贡献被认为是提高系统稳定性的合适解决方案。关于频率响应分析和电网稳定性,大多数贡献都引入了风管,讨论在任意功率不平衡条件下孤立的电力系统的产生绊倒。然后,分析频率响应的假设失衡通常在5%至20%之间,并假定能量时间表方案。在本文中,提出了一个更现实的框架,以通过包括大风动力整合来评估频率偏差。在此目标中,在这项工作中考虑了单位承诺方案和频率负载脱落,以在高风力渗透下进行频率响应分析。 Gran Canaria岛的孤立电力系统(西班牙)用于评估目的。结果不仅取决于风力电力的整合,还可以从风频控制中进行各种影响,还取决于正在运行中的发电单元,旋转惯性减少以及每个资源的可用储量,这些方面以前在特定文献中尚未解决以评估高风力电力集成下的频率方面。

The relevant integration of wind power into the grid has involved a remarkable impact on power system operation, mainly in terms of security and reliability due to the inherent loss of the rotational inertia as a consequence of such new generation units decoupled from the grid. In these weak scenarios, the contribution of wind turbines to frequency control is considered as a suitable solution to improve system stability. With regard to frequency response analysis and grid stability, most contributions introduce wind control discuss generation tripping for isolated power systems under arbitrary power imbalance conditions. Frequency response is then analyzed for hypothetical imbalances usually ranged between 5% and 20%, and assuming averaged energy schedule scenarios. In this paper, a more realistic framework is proposed to evaluate frequency deviations by including high wind power integration. With this aim, unit commitment schemes and frequency load shedding are considered in this work for frequency response analysis under high wind power penetration. The Gran Canaria Island's isolated power system (Spain) is used for evaluation purposes. Results provide a variety of influences from wind frequency control depending not only on the wind power integration, but also the generation units under operation, the rotational inertia reductions as well as the available reserves from each resource, aspects that have not been addressed previously in the specific literature to evaluate frequency excursions under high wind power integration.

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