在新兴的分销网络中,用于集成和主动管理高渗透的分布式存储的软件工具概述

N. Petrovic, L. Strezoski, B. Dumnic
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引用次数: 8

摘要

管理分布式能源(DERs)的新兴类型的软件和通信系统,如太阳能光伏、风力涡轮机、飞轮、电池存储系统等,被称为分布式能源管理系统(DERMS)。如果部署得当,它们的功能将为公用事业公司及其客户提供多种好处。DERMS由一套软件管理工具组成,允许分销公司和运营商管理一系列的der,并提供几乎实时的网络控制。DERMS可以极大地帮助整合、管理和控制灵活和间歇性的DERs和电力需求。这些分析有助于保持输配电系统与高效、可靠的供需平衡同步,从而实现潮流、电力需求、DERs和传统集中式发电的理想优化。此外,为了处理分布式发电(DG)并提高其在电力市场中的知名度,虚拟电厂(VPP)的概念已经出现。本文介绍的DERMS工具可以实现配电系统的动态、自动化和成本效益管理。此外,各种层次的DERMS工具并存,如DER aggreator、VPP、Utility DERMS等,都能极大地提高主动配电网(ADN)的效率。本文概述了当前关于各种DERMS工具的最新技术,以及它们提高整体配电系统效率的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Overview of software tools for integration and active management of high penetration of DERs in emerging distribution networks
Emerging types of software and communication systems that manage distributed energy resources (DERs) such as solar photovoltaic, wind turbines, flywheels, battery storage systems, etc. are termed Distributed Energy Resources Management Systems (DERMS). When properly deployed, their capabilities provide multiple benefits to both, utilities and their customers. DERMS consists of a set of software management tools that allow distribution companies and operators to manage a range of DERs, and offer almost real-time network control. DERMS can help tremendously in integrating, managing, and controlling flexible and intermittent DERs and electric demand. These analyses contribute to keeping the transmission and distribution system in sync with the efficient and reliable balance of supply and demand that should lead to ideally optimization of power flows, electric demand, DERs, and traditional centralized generation. Moreover, in order to handle distributed generation (DG) and to intensify its visibility within power markets, the idea of virtual power plant (VPP) has emerged. Dynamic, automated, and cost-effective management of the distribution system is achieved with DERMS tools that are presented in this paper. Moreover, various hierarchy-levels of DERMS tools co-exist nowadays, such as DER aggregator, VPP, Utility DERMS, and they all can tremendously improve efficiency of Active Distribution Networks (ADN). This paper presents an overview of the current state-of-the-art regarding various DERMS tools, and their capabilities to increase the overall distribution system efficiency.
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