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Local Storage Meets Local Demand: A Technical Solution to Future Power Distribution System

机译:本地存储满足本地需求:未来配电系统的技术解决方案

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摘要

Future power systems are expected to integrate large-scale stochastic and intermittent generation and load due to reduced use of fossil fuel resources, including renewable energy sources (RES) and electric vehicles (EV). Inclusion of such resources poses challenges for the dynamic stability of synchronous transmission and distribution networks, not least in terms of generation where system inertia may not be wholly governed by large-scale generation but displaced by small-scale and localised generation. Energy storage systems (ESS) can limit the impact of dispersed and distributed generation by offering supporting reserve while accommodating large-scale EV connection; the latter (load) also participating in storage provision. In this paper, a local energy storage system (LESS) is proposed. The structure, requirement and optimal sizing of the LESS are discussed. Three operating modes are detailed, including: 1) storage pack management; 2) normal operation; and 3) contingency operation. The proposed LESS scheme is evaluated using simulation studies based on data obtained from the Northern Ireland regional and residential network.
机译:由于减少了对化石燃料资源(包括可再生能源(RES)和电动汽车(EV))的使用,未来的电力系统有望整合大规模的随机和间歇性发电和负荷。包含此类资源给同步输配电网络的动态稳定性带来了挑战,特别是在发电方面,系统惯性可能不会完全由大规模发电控制,而可能由小规模和局部发电取代。储能系统(ESS)可通过提供支持性储备同时容纳大规模EV连接来限制分散和分布式发电的影响;后者(负载)也参与存储供应。本文提出了一种本地储能系统(LESS)。讨论了LESS的结构,要求和最佳尺寸。详细介绍了三种操作模式,包括:1)存储包管理; 2)正常运行; 3)应急行动。拟议的LESS计划是根据从北爱尔兰地区和居民网络获得的数据,通过模拟研究进行评估的。

著录项

  • 作者

    Zhou Bowen; Littler Timothy;

  • 作者单位
  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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