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Applications of optimization models for electricity distribution networks
Wiley Interdisciplinary Reviews: Energy and Environment ( IF 5.4 ) Pub Date : 2021-05-05 , DOI: 10.1002/wene.401
Sander Claeys 1 , Marta Vanin 1 , Frederik Geth 2 , Geert Deconinck 1
Affiliation  

Increased penetration of low-carbon technologies, such as residential photovoltaic systems, electric vehicles, and batteries, can potentially cause voltage quality issues in distribution networks. Active distribution networks adopt control schemes where these assets are actively managed to prevent potential issues, increasing the network utilization. Mathematical optimization is a key technology in enabling such applications, either directly as the underlying solution, or for benchmarking effectiveness. As networks are operated closer to their engineering limits, models representing distribution network physics become increasingly important. This article reviews how distribution networks are modeled with varying degrees of detail in the context of optimization problems. It goes on to catalog the applications that use such models, and ends with an overview of toolchains to implement them, to enable the transition from the passive to active management of the distribution system.

中文翻译:

配电网优化模型的应用

低碳技术的普及,例如住宅光伏系统、电动汽车和电池,可能会导致配电网络出现电压质量问题。主动配电网络采用控制方案,主动管理这些资产以防止潜在问题,提高网络利用率。数学优化是启用此类应用程序的关键技术,无论是直接作为底层解决方案,还是用于基准测试的有效性。随着网络运行接近其工程极限,代表配电网络物理的模型变得越来越重要。本文回顾了如何在优化问题的上下文中对配电网络进行不同程度的建模。它继续对使用此类模型的应用程序进行分类,
更新日期:2021-05-05
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