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Wind power integration into the automatic generation control of power systems with large-scale wind power

机译:风电集成到大型风电系统的自动发电控制中

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摘要

Transmission system operators have an increased interest in the active participation of wind power plants (WPP) in the power balance control of power systems with large wind power penetration. The emphasis in this study is on the integration of WPPs into the automatic generation control (AGC) of the power system. The present paper proposes a coordinated control strategy for the AGC between combined heat and power plants (CHPs) and WPPs to enhance the security and the reliability of a power system operation in the case of a large wind power penetration. The proposed strategy, described and exemplified for the future Danish power system, takes the hour-ahead regulating power plan for generation and power exchange with neighbouring power systems into account. The performance of the proposed strategy for coordinated secondary control is assessed and discussed by means of simulations for different possible future scenarios, when wind power production in the power system is high and conventional production from CHPs is at a minimum level. The investigation results of the proposed control strategy have shown that the WPPs can actively help the AGC, and reduce the real-time power imbalance in the power system, by down regulating their production when CHPs are unable to provide the required response.
机译:输电系统运营商对风力发电厂(WPP)积极参与具有较大风电渗透力的电力系统的功率平衡控制越来越感兴趣。这项研究的重点是将WPP集成到电力系统的自动发电控制(AGC)中。本文提出了热电联产电厂(CHPs)和WPPs之间的AGC协调控制策略,以增强在大风电渗透情况下电力系统运行的安全性和可靠性。为未来的丹麦电力系统描述和举例说明的拟议策略考虑了用于与相邻电力系统进行发电和电力交换的提前小时调节电力计划。当电力系统中的风力发电量很高且热电联产的常规发电量处于最低水平时,将通过模拟针对不同的可能的未来情景对拟议的协调控制策略的性能进行评估和讨论。提出的控制策略的调查结果表明,当CHP无法提供所需的响应时,WPP可以通过下调其产量来积极帮助AGC,并减少电力系统中的实时功率不平衡。

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