论文标题
基于优化的框架,用于在各种灵活性和协调水平下进行低压网格增强评估
Optimization-based framework for low-voltage grid reinforcement assessment under various levels of flexibility and coordination
论文作者
论文摘要
预计住宅供暖和移动部门的快速电气化将使现有的分销网格资产超出其计划的运营条件。这种变化还将通过部门耦合,灵活性以及分散生成的本地交换来揭示新的潜力。因此,本文为低压(LV)分布电网介绍了多模式能系统的优化框架。在此,我们专注于网格的增强要求以及对柔韧性组成部分的技术经济评估和代理之间的协调。通过采用多层次方法,可以降低计算复杂性,并实施各种级别的协调和灵活性。我们对德国代表性农村网格的案例研究结束了这项工作,在该研究中,我们观察到建筑物灵活运作的高经济潜力,主要归功于光伏整合。在所有以最佳基准测试的范式中,基于被动和主动措施的混合物的网格增强是必要的。在灵活性和协调之间观察到协同效应,因为它们的组合将峰降低到完全避免网格增强的程度。提出的框架可以使用多种网格和组件类型应用,以概述未来LV分配网格的广泛景观。
The rapid electrification of residential heating and mobility sectors is expected to drive the existing distribution grid assets beyond their planned operating conditions. This change will also reveal new potentials through sector coupling, flexibilities, and the local exchange of decentralized generation. This paper thus presents an optimization framework for multi-modal energy systems at the low voltage (LV) distribution grid level. In this, we focus on the reinforcement requirements of the grid and the techno-economic assessment of flexibility components and coordination between agents. By employing a multi-level approach, computational complexity is reduced, and various levels of coordination and flexibilities are implemented. We conclude the work with a case study for a representative rural grid in Germany, in which we observe high economic potential in the flexible operation of buildings, majorly thanks to better integration of photovoltaics. Across all paradigms barring a best-case benchmark, grid reinforcement based on a mix of passive and active measures was necessary. A synergy effect is observed between flexibilities and coordination, as their combination reduces the peaks to the extent of completely avoiding grid reinforcement. The presented framework can be applied with a wide range of grid and component types to outline the broad landscape of future LV distribution grids.