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Compensating active power imbalances in power system with large-scale wind power penetration 被引量:10
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作者 Abdul BASIT anca d.hansen +2 位作者 Mufit ALTIN Poul E.SØRENSEN Mette GAMST 《Journal of Modern Power Systems and Clean Energy》 SCIE EI 2016年第2期229-237,共9页
Large-scale wind power penetration can affect the supply continuity in the power system.This is a matter of high priority to investigate,as more regulating reserves and specified control strategies for generation cont... Large-scale wind power penetration can affect the supply continuity in the power system.This is a matter of high priority to investigate,as more regulating reserves and specified control strategies for generation control are required in the future power system with even more high wind power penetration.This paper evaluates the impact of large-scale wind power integration on future power systems.An active power balance control methodology is used for compensating the power imbalances between the demand and the generation in real time,caused by wind power forecast errors.The methodology for the balance power control of future power systems with large-scale wind power integration is described and exemplified considering the generation and power exchange capacities in2020 for Danish power system. 展开更多
关键词 Wind power plant SIMBA Centralized or decentralized combined heat and power plant Automatic generation control
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Real-time impact of power balancing on power system operation with large scale integration of wind power 被引量:8
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作者 Abdul BASIT anca d.hansen +1 位作者 Poul E.SØRENSEN Georgios GIANNOPOULOS 《Journal of Modern Power Systems and Clean Energy》 SCIE EI 2017年第2期202-210,共9页
Highly wind power integrated power system requires continuous active power regulation to tackle the power imbalances resulting from the wind power forecast errors. The active power balance is maintained in real-time w... Highly wind power integrated power system requires continuous active power regulation to tackle the power imbalances resulting from the wind power forecast errors. The active power balance is maintained in real-time with the automatic generation control and also from the control room, where regulating power bids are activated manually. In this article, an algorithm is developed to simulate the activation of regulating power bids, as performed in the control room, during power imbalance between generation and load demand. In addition, the active power balance is also controlled through automatic generation control, where coordinated control strategy between combined heat and power plants and wind power plant enhances the secure power system operation. The developed algorithm emulating the control room response,to deal with real-time power imbalance, is applied and investigated on the future Danish power system model. The power system model takes the hour-ahead regulating power plan from power balancing model and the generation and power exchange capacities for the year 2020 into account.The real-time impact of power balancing in a highly wind power integrated power system is assessed and discussed by means of simulations for different possible scenarios. 展开更多
关键词 Wind power plant(WPP) Simulation power Balancing model(SimBa) Centralised or de-centralised combined heat and power plant(CHP or DCHP) Automatic generation control(AGC) Rolling balance
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