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Optimal Scheduling of a Multi-Energy Power System with Multiple Flexible Resources and Large-Scale Wind Power

机译:具有多种柔性资源和大规模风电的多能源电力系统的最优调度

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With the grid-connected operation of large-scale wind farms, the contradiction between supply and demand of power systems is becoming more and more prominent. The introduction of multiple types of flexible resources provides a new technical means for improving the supply–demand matching relationship of system flexibility and promoting wind power consumption. In this paper, multi-type flexible resources made up of deep peak regulation of thermal units, demand response, and energy storage were utilized to alleviate the peak regulation pressure caused by large-scale wind power integration. Based on current thermal plant deep peak regulation technology, a three-phase peak regulation cost model of thermal power generation considering the low load fatigue life loss and oil injection cost of the unit was proposed. Additionally, from the perspective of supply–demand balance of power system flexibility, the flexibility margin index of a power system containing source-load-storage flexible resources was put forward to assess the contribution from each flexibility provider to system flexibility. Moreover, an optimal dispatching model of a multi-energy power system with large-scale wind power and multi-flexible resources was constructed, aimed at the lowest total dispatching cost of the whole scheduling period. Finally, the model proposed in this paper was validated by a modified RTS96 system, and the effects of different flexibility resources and wind power capacity on the optimal scheduling results were discussed.
机译:随着大型风电场并网运行,电力系统供需矛盾日益突出。多种柔性资源的引入为改善系统柔性的供需匹配关系,促进风电消耗提供了新的技术手段。本文利用由热力单元的深度调峰,需求响应和能量存储组成的多种类型的柔性资源,来缓解大规模风电整合带来的调峰压力。基于当前火电厂的深度调峰技术,提出了一种考虑机组低负荷疲劳寿命损失和喷油成本的火力发电三相调峰成本模型。此外,从电力系统灵活性的供需平衡角度出发,提出了包含源-负载-存储灵活资源的电力系统的灵活性裕度指数,以评估每个灵活性提供商对系统灵活性的贡献。此外,针对整个调度周期内总调度成本最低的问题,构建了具有大规模风能,多种柔性资源的多能源电力系统最优调度模型。最后,通过改进的RTS96系统对本文提出的模型进行了验证,并讨论了不同的柔性资源和风电容量对最优调度结果的影响。

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