Design and analysis of electrical energy storage demonstration projects on UK distribution networks

Design and analysis of electrical energy storage demonstration projects on UK distribution networks
复制标题

DOI:
10.1016/j.apenergy.2014.09.027
复制
发表时间:
2015
期刊:
影响因子:
11.2
通讯作者:
P. Lyons;N. Wade;T. Jiang;P. Taylor;F. Hashiesh;M. Michel;David Miller
P. Lyons;N. Wade;T. Jiang;P. Taylor;F. Hashiesh;M. Michel;David Miller
中科院分区:
工程技术1区
文献类型:
--
作者:
P. Lyons;N. Wade;T. Jiang;P. Taylor;F. Hashiesh;M. Michel;David Miller

文献摘要

被引文献

相似文献

英国政府的二氧化碳排放目标将要求该国大部分基础设施采用低碳技术,如光伏板、电动汽车和热泵,实现电气化。这些技术的大规模扩散将需要对配电网的规划和运作进行重大改革。配电网运营商正在他们的网络中试验电能存储(EES),以加深他们对它在实现预期的发电和用电模式转变方面所能做出的贡献的理解。为了评估EES的一系列应用,包括电压控制和潮流管理,在不同的配电网位置和电压水平进行了安装。本文报告了试验设计方法及其在英国EES系统试验中的应用,以确保结果的广泛适用性。从这些试验结果的EES系统,低碳技术和试验配电网用于开发验证电力系统模型。这些模型用于评估,使用形式化的方法,EES可能对未来配电网的设计和运营产生的影响。
The UK government’s CO2emissions targets will require electrification of much of the country’s infrastructure with low carbon technologies such as photovoltaic panels, electric vehicles and heat pumps. The large scale proliferation of these technologies will necessitate major changes to the planning and operation of distribution networks. Distribution network operators are trialling electrical energy storage (EES) across their networks to increase their understanding of the contribution that it can make to enable the expected paradigm shift in generation and consumption of electricity.In order to evaluate a range of applications for EES, including voltage control and power flow management, installations have taken place at various distribution network locations and voltage levels. This article reports on trial design approaches and their application to a UK trial of an EES system to ensure broad applicability of the results. Results from these trials of an EES system, low carbon technologies and trial distribution networks are used to develop validated power system models. These models are used to evaluate, using a formalised methodology, the impact that EES could have on the design and operation of future distribution networks.