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A simulation framework for assessing the market and grid driven value of flexibility options in distribution grids

机译:用于评估配电网中灵活性选项的市场和电网驱动价值的模拟框架

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摘要

The increasing share of renewable distributed energy resources (DERs) entails a rising number of congestions in the German distribution grids, such as voltage band violations and overloading of network assets. Consequently the need for grid expansion increases [1]. A politically promoted alternative to grid expansion is managing congestions by the preventive use of flexibility options, such as flexible generation, load management and storage systems [2]. However, preventive congestion management is not yet established in distribution grids. Thus, various measures are under discussion to stimulate the provision of flexibility options by its owners for concerns of congestion management. Assessing the suitability of solutions among these congestion management measures (CMMs) requires a realistic modeling of grid operation, energy system structures and the behavior of the owners of DER and flexibility options.The intended application of the presented simulation framework is consequently the assessment of the macro- and micro-economic effects of preventative CMMs in distribution grids. Supporting that goal, the design of an agent-based simulation framework, which incorporates detailed optimization models for simulating the behavior of grid users (owners of DER and flexibility options) and Distribution System Operators (DSO) is presented. Exemplarily it is applied on a realistic distribution grid use case. The simulation framework enables analyzing the consequences of the grid users’ interaction with the DSO following defined CMMs. Within the framework, the grid users are modeled as individually or market driven oriented users, who both aim at improving their micro-economic situation. The DSO’s operational target is the minimization of congestion management costs under application of several CMMs.The exemplary application focuses on four congestion management concepts, such as flexible tariffs and a market-based flexibility provision. The chosen use case comprises a congested distribution grid with high PV penetration and grid users at the medium and low voltage level. In the use case, the alternatively necessary curtailment of renewable energy can be reduced from 15% to 35% depending on the considered CMM. The most promising CMM (a market-based flexibility provision) reduces the DSO’s congestion management costs by 33%, without degrading the grid users’ economic situation. Future work will advance the analyses based on a comprehensive database of realistic distribution grid scenarios.
机译:可再生分布式能源资源(DER)的份额不断增加,导致德国配电网的拥堵越来越多,例如违反电压带和网络资产超载。因此,对网格扩展的需求增加了[1]。在政治上倡导的替代电网扩展的方法是通过预防性使用灵活性选项(例如,灵活的发电,负载管理和存储系统)来管理拥堵[2]。但是,尚未在配电网中建立预防性拥塞管理。因此,正在讨论各种措施以刺激其所有者对拥塞管理的关注提供灵活性选择。要评估这些拥堵管理措施(CMM)中解决方案的适用性,需要对电网运行,能源系统结构以及DER所有者的行为和灵活性选项进行现实的建模。因此,所提出的仿真框架的预期应用是对电网的评估。预防性三坐标测量机在配电网中的宏观和微观经济影响。为了支持该目标,提出了一种基于代理的仿真框架的设计,该框架结合了详细的优化模型,用于仿真网格用户(DER和灵活性选项的所有者)和配电系统运营商(DSO)的行为。示例性地,将其应用于现实的配电网用例。通过模拟框架,可以根据定义的CMM分析网格用户与DSO交互的后果。在该框架内,网格用户被建模为个人用户或面向市场的用户,他们都旨在改善其微观经济状况。 DSO的运营目标是在应用多个CMM的情况下将拥塞管理成本降至最低。该示例性应用集中于四个拥塞管理概念,例如灵活的资费和基于市场的灵活性条款。所选用例包括具有高PV渗透性的拥挤配电网以及中低压水平的电网用户。在用例中,根据考虑的CMM,可替代性地减少可再生能源的必要性可以从15%降低到35%。最有前途的CMM(基于市场的灵活性条款)可将DSO的拥塞管理成本降低33%,而不会降低电网用户的经济状况。未来的工作将基于现实的配电网方案的综合数据库来推进分析。

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