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Residential peak electricity management. A storage and control systems application taking advantages of smart meters

机译:住宅用电高峰管理。利用智能电表优势的存储和控制系统应用

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摘要

In recent years, technological progress in power electronics and in battery storage systems, along with the introduction of smart meters, have made possible the application of improvements in the control of power peaks for residential customers. The demand charge is an important component in the residential customer's electricity invoice in Spain, which has increased by nearly 100% in the last few years, prompting the consumers to reduce their peak usage. This paper proposes a model which allows residential consumers to save a significant part of their invoice by lowering contracted capacity through the use of a battery energy storage system. Recent academic literature has already studied in-depth the benefits of load-shifting energy throughout the day in the context of time of use (ToU) tariffs, but, regarding power optimization, there is a long way to go; not much research has been conducted in this field. In this article, a model to calculate optimum battery size which reduces contracted power is proposed. The model starts with a given load curve from a typical consumer in Spain in a context of constant energy prices. This system could be financed by the end user directly or by an independent company which participates in the savings.
机译:近年来,随着电力电子技术和电池存储系统的技术进步,以及智能电表的推出,已经有可能将改进的应用应用于住宅用户的功率峰值控制。需求收费是西班牙居民用户电发票中的重要组成部分,在过去的几年中,电费已增加了近100%,促使消费者减少了用电高峰。本文提出了一个模型,该模型允许居民用户通过使用电池储能系统降低合同容量,从而节省发票的大部分。最近的学术文献已经在使用时间(ToU)费率的背景下,全天深入研究了负载转移能源的好处,但是,关于功率优化,还有很长的路要走。在这一领域没有进行太多的研究。在本文中,提出了一种计算最佳电池尺寸的模型,该模型可减少合同规定的电量。该模型从西班牙典型消费者在给定能源价格的情况下的给定负载曲线开始。该系统可以由最终用户直接资助,也可以由参与储蓄的独立公司资助。

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