不同上网电价对配电网加固成本的影响

L. Kundert, A. Heider, G. Hug
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引用次数: 0

摘要

向可再生能源电网的过渡给配电网带来了各种挑战,可能导致未来大量的加固需求。本项目分析了不同的电网电价如何通过控制分散式灵活性选择的使用来缓解电网加固,即减少光伏发电、电池存储系统、智能充电和使用热能存储来改变热量需求。因此,产消者对这些灵活性选择的不同组合的反应是由成本最小化的基于消费者的优化建模的。有了这些,对德国六个不同电网进行了案例研究,研究了不同能源和基于容量的关税组成部分的各种组合。分析表明,时变的基于能源的组件,如昼夜能源关税或时变的供应商成本,导致灵活性选项的同步。这种同步可以增加电网加固成本,这取决于灵活性选项的渗透和用户偏好。另一方面,高峰负荷和上网电价的基于容量的收费部分通常会降低成本。然而,在特定情况下,这些组成部分也会减少位置较近的用户之间的协同作用。总体而言,在峰值负荷和馈电上具有恒定能量成分和容量成分的电价显示出降低加固成本的最大潜力,在所有被调查的电网中显示减少9.5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Influence of Different Network Tariffs on Distribution Grid Reinforcement Costs
The transition towards a renewable power grid raises various challenges in distribution grids, potentially leading to significant future reinforcement needs. This project analyses how different network tariffs can mitigate grid reinforcement by steering the use of decentralised flexibility options, namely curtailment of photovoltaic generation, battery storage systems, smart charging, and usage of thermal energy storage to shift heat demand. Therefore, the reaction of prosumers with different combinations of these flexibility options is modelled by a cost-minimising consumer-based optimisation. With these, a case study for six different grids in Germany is conducted for various combinations of different energy- and capacity-based tariff components. The analysis shows that time-varying energy-based components such as a day/night energy tariff or time-varying suppliers' cost lead to a synchronisation of the flexibility options. This synchronisation can increase grid reinforcement costs, depending on the penetration of flexibility options and the user preference. On the other hand, capacity-based tariff components on peak load and feed-in generally reduce the costs. However, these components can also reduce synergies between closely located users in specific situations. Overall, the tariff with a constant energy component and capacity components on peak load and feed-in shows the highest potential to reduce the reinforcement costs, showing a reduction of 9.5 % in all the investigated grids.
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