Distributed energy resource management systems—DERMS: State of the art and how to move forward

IF 5.4 3区 工程技术 Q2 ENERGY & FUELS
L. Strezoski
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引用次数: 7

Abstract

Due to an ever‐increasing rise in proliferation of distributed energy resources (DERs), the paradigm of passive electrical distribution networks is shifting toward active distribution systems. This new environment introduces a plethora of challenges that cannot be managed by traditional tools, whose utilization could compromise the reliability and efficient operation of distribution feeders. This article systematically reviews state of the art in different DERs management software solutions available today. Additionally, it establishes distinguished roles and responsibilities of different levels of hierarchy in distinct solutions that are all commonly called DERs management systems—DERMS (e.g., fully centralized versus fully decentralized DER management solutions). Lastly, it offers a viewpoint on the directions that hold potential for the power system community and industry to explore for further developments of more robust and intelligent DERMS, to successfully enable efficient transition into a new era of clean and sustainable power systems, encompassing active and dynamically changing distribution circuits.

Abstract Image

分布式能源管理系统- derms:技术的现状和如何向前发展
由于分布式能源(DERs)的不断增长,无源配电网络的模式正在向主动配电系统转变。这种新环境带来了许多传统工具无法应对的挑战,这些工具的使用可能会影响配电馈线的可靠性和高效运行。本文系统地回顾了目前可用的不同DERs管理软件解决方案的最新进展。此外,它在不同的解决方案中建立了不同层次结构的不同角色和职责,这些解决方案通常被称为DERs管理系统- derms(例如,完全集中式与完全分散的DER管理解决方案)。最后,它提供了电力系统社区和行业探索更强大和智能的DERMS进一步发展的潜力方向的观点,以成功地实现高效过渡到清洁和可持续电力系统的新时代,包括主动和动态变化的配电电路。
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来源期刊
CiteScore
11.70
自引率
3.30%
发文量
42
期刊介绍: Wiley Interdisciplinary Reviews: Energy and Environmentis a new type of review journal covering all aspects of energy technology, security and environmental impact. Energy is one of the most critical resources for the welfare and prosperity of society. It also causes adverse environmental and societal effects, notably climate change which is the severest global problem in the modern age. Finding satisfactory solutions to the challenges ahead will need a linking of energy technology innovations, security, energy poverty, and environmental and climate impacts. The broad scope of energy issues demands collaboration between different disciplines of science and technology, and strong interaction between engineering, physical and life scientists, economists, sociologists and policy-makers.
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