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The impact of increased interconnection on electricity systems with large penetrations of wind generation: A case study of Ireland and Great Britain

机译:互联互通对风力发电普及率大的电力系统的影响:以爱尔兰和英国为例

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Increased interconnection has been highlighted as potentially facilitating the integration of wind generation in power systems by increasing the flexibility to balance the variable wind output. This paper utilizes a stochastic unit commitment model to simulate the impacts of increased interconnection for the island of Ireland with large penetrations of wind generation. The results suggest that increased interconnection should reduce average prices in Ireland, and the variability of those prices. The simulations also suggest that while increased interconnection may reduce carbon dioxide emissions in Ireland, Great Britain would experience an increase in emissions, resulting in total emissions remaining almost unchanged. The studies suggest that increased interconnection would not reduce excess wind generation. This is because under unit commitment techniques which incorporate wind power forecasts in the scheduling decisions, wind curtailment is minimal even with low levels of interconnection. As would be expected an increase in interconnection should improve system adequacy considerably with a significant reduction in the number of hours when the load and reserve constraints are not met.
机译:互连性的提高已被强调为通过增加平衡可变风输出的灵活性,有可能促进风力发电在电力系统中的集成。本文利用随机单位承诺模型来模拟随着风的渗透率增加,对爱尔兰岛的互联互通的影响。结果表明,互连程度的提高将降低爱尔兰的平均价格,并降低这些价格的波动性。这些模拟还表明,虽然加强互联互通可以减少爱尔兰的二氧化碳排放量,但英国的排放量却会增加,从而导致总排放量几乎保持不变。研究表明,增加互联互通不会减少过多的风力发电。这是因为在将风能预测纳入调度决策的单元承诺技术下,即使互连程度较低,风能的削减也是最小的。可以预期,增加互连将大大改善系统的适用性,并显着减少不满足负荷和储备约束的小时数。

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