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Renewable Generation Capacity and Wholesale Electricity Price Variance

机译:可再生能源发电量和批发电价差异

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摘要

The share of electric power generated from renewable energy sources such as wind and solar must increase dramatically in the coming decades if greenhouse gas emissions are to be reduced to sustainable levels. An under-researched implication of such a transition in competitive wholesale electricity markets is that greater wind and solar generation capacity directly affects wholesale price variability. In theory, two counter-vailing forces should be at work. First, greater wind and solar generation capacity should reduce short-run variance in the wholesale electricity price due to a stochastic merit-order eject. However, increasing the generation capacity of these technologies may increase price variance due to an intermittency effect. Using an instrumental variables identification strategy to control for endogeneity, we find evidence that greater combined wind and solar generation capacity is associated with an increase in the quarterly variance of wholesale electricity prices. That is, the intermittency effect dominates the stochastic merit-order effect.
机译:如果要将温室气体排放量减少到可持续的水平,那么在未来几十年中,由风能和太阳能等可再生能源产生的电力份额必须大大增加。竞争性批发电力市场中这种过渡的研究不足,是风能和太阳能发电能力的提高直接影响批发价格的可变性。从理论上讲,两个反作用力应该起作用。首先,较大的风能和太阳能发电能力应减少由于随机绩效顺序弹出而导致的短期电力批发价格波动。但是,由于间歇性影响,增加这些技术的发电量可能会增加价格差异。使用工具变量识别策略来控制内生性,我们发现证据表明,风电和太阳能发电的综合容量更大,与批发电价的季度方差增加有关。即,间歇效应支配了随机择优效应。

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