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An Analysis of Decentralized Demand Response as Frequency Control Support under Critical Wind Power Oscillations

机译:临界风电振荡下作为频率控制支持的分散需求响应分析

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In power systems with high wind energy penetration, the conjunction of wind power fluctuations and power system inertia reduction can lead to large frequency excursions, where the operating reserves of conventional power generation may be insufficient to restore the power balance. With the aim of evaluating the demand-side contribution to frequency control, a complete process to determine critical wind oscillations in power systems with high wind penetration is discussed and described in this paper. This process implies thousands of wind power series simulations, which have been carried out through a validated offshore wind farm model. A large number of different conditions have been taken into account, such as frequency dead bands, the percentages of controllable demand and seasonal factor influence on controllable loads. Relevant results and statistics are also included in the paper.
机译:在具有高风能渗透率的电力系统中,风力波动和电力系统惯性降低的结合会导致较大的频率偏移,而常规发电的运行储备可能不足以恢复电力平衡。为了评估需求侧对频率控制的贡献,本文讨论并描述了确定具有高风速穿透力的电力系统中关键风振的完整过程。此过程涉及成千上万的风力发电系列仿真,这些仿真已通过经过验证的海上风电场模型进行。考虑了许多不同的条件,例如死区频率,可控需求的百分比和季节性因素对可控负载的影响。相关结果和统计信息也包括在本文中。

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