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首页> 外文期刊>Applied Sciences >Robust Co-Optimization to Energy and Reserve Joint Dispatch Considering Wind Power Generation and Zonal Reserve Constraints in Real-Time Electricity Markets
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Robust Co-Optimization to Energy and Reserve Joint Dispatch Considering Wind Power Generation and Zonal Reserve Constraints in Real-Time Electricity Markets

机译:考虑风力发电和实时电力市场中的风发储备约束,强大的协同优化

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This paper proposes an energy and reserve joint dispatch model based on a robust optimization approach in real-time electricity markets, considering wind power generation uncertainties as well as zonal reserve constraints under both normal and N -1 contingency conditions. In the proposed model, the operating reserves are classified as regulating reserve and spinning reserve according to the response performance. More specifically, the regulating reserve is usually utilized to reduce the gap due to forecasting errors, while the spinning reserve is commonly adopted to enhance the ability for N -1 contingencies. Since the transmission bottlenecks may inhibit the deliverability of reserve, the zonal placement of spinning reserve is considered in this paper to improve the reserve deliverability under the contingencies. Numerical results on the IEEE 118-bus test system show the effectiveness of the proposed model.
机译:本文提出了一种基于实时电力市场中的鲁棒优化方法的能量和储备联合调度模型,考虑到风力发电不确定性以及在正常和N -1应急条件下的区域储备限制。在拟议的型号中,操作储备根据响应性能分类为调节储备和纺纱储备。更具体地,调节储备通常用于降低由于预测误差引起的差距,而纺纱储备通常采用以增强N -1次次次曲目的能力。由于传动瓶颈可以抑制储备的可交换性,因此在本文中考虑了纺纱储备的区域放置,以提高突发事件下的储备可交付能力。 IEEE 118总线测试系统的数值结果显示了所提出的模型的有效性。

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