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Demand-Side Contribution to Primary Frequency Control With Wind Farm Auxiliary Control

机译:风电场辅助控制对主频率控制的需求侧贡献

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摘要

Maintaining a close balance between power generation and demand is essential for sustaining the quality and reliability of a power system. Currently, due to increased renewable energy generation, frequency deviations and power fluctuations of greater concern are being introduced to the grid, particularly in regions that are weakly interconnected with their surrounding areas, such as small islands. This paper addresses the problem of frequency control in isolated power systems with relevant inclusion of wind power generation. With this aim, we have analyzed the contribution of the demand side to the primary frequency control together with an auxiliary frequency control, which is carried out by variable-speed wind turbines through an additional control loop that synthesizes virtual inertia. We have evaluated both the suitability of these two additional control actions counteracting frequency deviation and their potential reserves and compatibility. The results indicate a substantial improvement in both the dynamic performance and grid frequency stability. Simulations also indicate a decrease in the steady-state frequency error, which may relieve the secondary frequency control.
机译:在发电和需求之间保持紧密的平衡对于维持电力系统的质量和可靠性至关重要。当前,由于增加的可再生能源的产生,频率偏差和功率波动正被引入电网,特别是在与周围区域弱连接的区域中,例如小岛。本文解决了与风力发电相关的孤立电力系统中的频率控制问题。为此,我们分析了需求侧对主频率控制以及辅助频率控制的贡献,该辅助频率控制由变速风力涡轮机通过合成虚拟惯性的附加控制回路执行。我们已经评估了这两个附加控制措施抵消频率偏差的适用性及其潜在的储备和兼容性。结果表明,动态性能和电网频率稳定性都得到了显着改善。仿真还表明,稳态频率误差减小了,这可能减轻了次级频率控制。

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