支持低压配电网运行的在线蓄电池计划调整

Maximilian J. Zangs, Timur Yunusov, W. Holderbaum, B. Potter
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引用次数: 1

摘要

国内电力需求的增加预计会给现有的配电网带来巨大压力。为了延迟或防止昂贵的电网加固,一些英国配电网络运营商(DNOs)正在研究在低压(LV)配电网络中使用电池储能解决方案(BESS)或其他需求响应系统来降低峰值需求。在大多数情况下,控制策略和成功的度量是在半小时的基础上进行评估的,因此半小时以内(即每分钟)的需求变化没有得到有效处理。在这项工作中,提出了一种闭环优化方法,以半小时以下的方式调整BESS的预定充电配置文件,以改善网络运行,同时在半小时内保持相同的平均净能量流。这种新方法保证了BESS遵循其预定的半小时计划,但电压和功率不平衡、网络损耗和馈线过载通过半小时控制动作得到了额外的缓解。为了验证,本文提出了一个基于实际BESS的案例研究,该BESS作为泰晤士河谷愿景项目的一部分安装在布拉克内尔,苏格兰和南方能源配电(SSE-PD)在IEEE低压测试用例馈线模型上进行评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On-line adjustment of battery schedules for supporting LV distribution network operation
Increasing domestic demand for electric energy is expected to put significant strain on the existing power distribution networks. In order to delay or prevent costly network reinforcement, some UK Distribution Network Operators (DNOs) are investigating the use of Battery Energy Storage Solutions (BESS), or other demand response systems, in the Low-Voltage (LV) power distribution networks to reduce peak demand. In most cases the control strategies, and metrics of success, are evaluated on a half-hourly basis and so sub-half-hourly (i.e. minute by minute) variations in demand are not effectively addressed. In this work, a closed-loop optimisation methodology is proposed that adjusts the pre-scheduled charging profile of a BESS in a sub-half-hourly manner in order to improve network operation whilst maintain the same average net energy flow over the half-hour period. This new approach guarantees that the BESS follows its predetermined half-hourly schedule, yet voltage and power imbalance, network losses, and feeder overloading are additionally mitigated through sub-half-hourly control actions. For validation, this paper presents a case study based on the real BESS installed in Bracknell as part of Thames Valley Vision project with Scottish and Southern Energy Power Distribution (SSE-PD) evaluated on the IEEE LV test case feeder model.
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