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A Peak Reduction Scheduling Algorithm for Storage Devices on the Low Voltage Network

机译:低压电网中存储设备的峰值减少调度算法

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摘要

Reinforcing the Low Voltage (LV) distribution network will become essential to ensure it remains within its operating constraints as demand on the network increases. The deployment of energy storage in the distribution network provides an alternative to conventional reinforcement. This paper presents a control methodology for energy storage to reduce peak demand in a distribution network based on day-ahead demand forecasts and historical demand data. The control methodology pre-processes the forecast data prior to a planning phase to build in resilience to the inevitable errors between the forecasted and actual demand. The algorithm uses no real time adjustment so has an economical advantage over traditional storage control algorithms. Results show that peak demand on a single phase of a feeder can be reduced even when there are differences between the forecasted and the actual demand. In particular, results are presented that demonstrate when the algorithm is applied to a large number of single phase demand aggregations that it is possible to identify which of these aggregations are the most suitable candidates for the control methodology.
机译:加强低压(LV)配电网络对于确保随着网络需求的增长而保持在其运行限制内至关重要。能量存储在配电网中的部署提供了传统加固的替代方案。本文提出了一种基于日前需求预测和历史需求数据的储能控制方法,以降低配电网络的峰值需求。控制方法在计划阶段之前会对预测数据进行预处理,以增强对预测需求与实际需求之间不可避免的误差的适应性。该算法不使用实时调整,因此与传统的存储控制算法相比具有经济优势。结果表明,即使预测需求与实际需求之间存在差异,馈线单相的峰值需求也可以降低。特别是,提供的结果证明了该算法何时应用于大量的单相需求汇总,从而有可能确定这些汇总中的哪一个最适合用于控制方法。

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