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Flexibility Market Design for Congestion Management in Smart Distribution Grids: the Dutch Demonstration of the Interflex Project

机译:智能配电网中拥堵管理的柔性市场设计:荷兰Interflex项目演示

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Nowadays, the distribution network is subjected to several capacity challenges and congestion problems due to the growing number of distributed energy resources and new technologies such as solar photovoltaic (PV) energy, Electric Vehicles (EVs) and Battery Storage. Grid reinforcements are one of the traditional solutions to expand the network capacity, but are time consuming and sometimes not a cost-effective approach to address these sort of congestion problems. In the transition towards smart distribution networks, local flexibility on the demand-side can be employed as an alternative solution. In the European H2020 Interflex project, the enabling role of Distribution System Operators (DSOs) in calling for flexibility is investigated. The Dutch demonstration of this project has designed and implemented a flexibility (Flex) market model based on the Universal System Energy Framework (USEF). The main goal is to enable local flexibility to address a day-ahead congestion problem in parts of the Low Voltage (LV) grid. The proposed architecture consists of the interactions between the local aggregators, commercial aggregators and the DSO. The pilot has been implemented in the residential, urban area Strijp-S in Eindhoven. In this paper, the final demonstration results of Interflex are presented. The field test results indicate that the implemented systems are capable of solving the day-ahead congestion problems. Nonetheless, there are uncertainties for the viability of a local flexibility market such as the complexity of the trading process, limited market liquidity and reliability of flex supply.
机译:如今,由于分布式能源的不断增长以及诸如太阳能光伏(PV)能源,电动汽车(EV)和电池存储等新技术的出现,配电网络面临着一些容量挑战和拥堵问题。网格增强是扩展网络容量的传统解决方案之一,但耗时且有时不是解决此类拥塞问题的经济有效的方法。在向智能配电网络的过渡中,可以将需求方的本地灵活性用作替代解决方案。在欧洲H2020 Interflex项目中,研究了配电系统运营商(DSO)在呼吁灵活性方面的推动作用。荷兰对该项目的演示基于通用系统能源框架(USEF)设计并实现了灵活性(Flex)市场模型。主要目标是使本地灵活性能够解决低压(LV)电网部分地区日复一日的拥堵问题。提议的体系结构由本地聚合器,商业聚合器和DSO之间的交互组成。该试验已在埃因霍温的住宅区Strijp-S实施。本文介绍了Interflex的最终演示结果。现场测试结果表明,已实施的系统能够解决日趋拥堵的问题。但是,当地灵活性市场的生存能力存在不确定性,例如交易过程的复杂性,有限的市场流动性和弹性货源的可靠性。

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