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Duck-Curve Mitigation in Power Grids With High Penetration of PV Generation

机译:光伏发电高渗透率电网鸭曲线缓解

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Small-scale PV generation has become popular with residential customers in several jurisdictions with high solar radiation, as an alternative to improve their carbon footprint and reduce their electricity bills. However, massive deployment of such distributed generation is creating a particular and undesirable shape in the net demand, which deepens at hours of peak solar PV injections at noon and suddenly rises towards the evening, known as the “duck curve”. Hence, this paper investigates the use of pre-cooling strategies in residential households to mitigate the duck-curve effects. To this aim, appropriate thermal models and simulations of houses are first developed and carried out to demonstrate the technical feasibility of pre-cooling in a house with a typical configuration, based on the Smart Residential Load Simulator (SRLS) developed at the University of Waterloo. Then, an aggregation technique is proposed to evaluate the effects on a large grid of different penetration levels of PV, and pre-cooling approaches to manage the duck-curve in California and Texas, concluding that such techniques are capable of substantially flattening the system net demand curve.
机译:在几个太阳辐射高的司法管辖区,小规模光伏发电已成为住宅客户的热门选择,作为改善碳足迹和减少电费的替代方案。然而,这种分布式发电的大规模部署正在净需求中形成一种特殊且不受欢迎的形状,这种形状在中午太阳能光伏注入高峰时加深,并在傍晚突然上升,被称为“鸭子曲线”。因此,本文研究了在住宅家庭中使用预冷策略来减轻鸭子曲线效应的方法。为此,首先开发并进行了适当的房屋热模型和模拟,以证明基于滑铁卢大学开发的智能住宅负载模拟器(SRLS)在具有典型配置的房屋中预冷的技术可行性。然后,提出了一种聚合技术来评估不同光伏渗透水平对大型电网的影响,以及管理加利福尼亚州和德克萨斯州鸭子曲线的预冷方法,得出的结论是,这些技术能够使系统净需求曲线大幅平坦化。

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