Coordination of renewable energy and flexible loads in electricity markets via financial tools

Ye Tao, Zhiwei Xu
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Abstract

Flexible energy usage is an important property of many loads. Power systems can achieve better social welfare from their flexibility. Besides, flexible loads are also a choice to offset the fluctuation in the power system from renewable energy, e.g. wind and solar. Since they are affected by enormous uncertain factors, it is still a challenge to predicate their power outputs accurately especially when the prediction executes several hours earlier. For example, the wind prediction at one day ahead may be far away from the real-time measurement. This prediction error can be counteracted by changing the schedules of flexible loads in real-time scheduling. Electricity market is a promising platform to coordinate the schedules of wind and flexible loads through financial tools. That is, flexible loads can receive incentive by providing flexibility to renewable resources under market rules, and renewable resources will hedge their prediction error by this flexibility. We outline a multi-settlement electricity market architecture to enable flexibility trading and propose a mechanism to mitigate the volatility risk by using energy options and financial rights under the proposed architecture. A trading sample and an IEEE benchmark system demonstrate the effectiveness of the proposed hedging mechanism.
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通过金融工具协调可再生能源和电力市场的灵活负荷
灵活的能源使用是许多负荷的一个重要特性。电力系统的灵活性可以实现更好的社会福利。此外,灵活负荷也是抵消可再生能源(如风能和太阳能)电力系统波动的一种选择。由于它们受到巨大的不确定因素的影响,特别是当预测提前几个小时执行时,准确地预测它们的输出功率仍然是一个挑战。例如,一天前的风力预测可能与实时测量相差甚远。这种预测误差可以通过在实时调度中改变灵活负载的调度来抵消。电力市场是通过金融工具协调风电和柔性负荷调度的一个很有前景的平台。即在市场规则下,柔性负荷可以通过向可再生资源提供灵活性来获得激励,而可再生资源可以通过这种灵活性来对冲其预测误差。我们概述了一个多结算电力市场架构,以实现灵活性交易,并提出了一种机制,通过在拟议架构下使用能源期权和金融权利来降低波动性风险。交易样本和IEEE基准系统验证了所提出的套期保值机制的有效性。
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