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Development of an Energy Management System for a network of distributed energy resources to provide backup power and accumulate savings on time-of-use prices and peak demand charges

机译:开发用于分布式能源网络的能源管理系统,以提供备用电源并累积使用时间价格和高峰需求费用的节省

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Increased demand for electricity has led to pricing methods that promote efficient energy usage. One approach is to charge customers based on their time of usage, commonly known as the time-of-use (TOU) tariff. Under this tariff, electricity prices are higher during peak periods when usage is high and lower throughout off-peak periods when energy usage is reduced. Large commercial and industrial users are usually billed Peak Demand Charges (PDC) where they pay for both actual energy usage and available capacity. Spikes in electricity prices motivate many utility customers to search for other sources of high-quality, reliable, and in some cases renewable energy sources. This paper investigates how a network of Distributed Energy Resources (DER) controlled and monitored by an Energy Management System (EMS) can be used to reduce energy costs via energy arbitrage. In order to fully evaluate the impact of an EMS in operation today, a case study known as the UBC Living Lab Project was conducted. This project consists of four DERs spread out over 0.28 square kilometers on the UBC campus. These DERs are connected together through an EMS communication network that is capable of configuring each component to optimize energy usage and thus savings.
机译:电力需求的增长已导致定价方法提高了能源的有效利用。一种方法是根据客户的使用时间(通常称为使用时间(TOU)费率)向客户收费。在这种电价下,用电高峰时的电价较高,而减少能耗的非高峰期的电价较低。大型商业和工业用户通常需要支付高峰需求费用(PDC),在其中他们为实际能源使用量和可用容量付费。电价飙升促使许多公用事业客户寻求其他优质,可靠的能源,在某些情况下还使用可再生能源。本文研究了如何使用由能源管理系统(EMS)控制和监视的分布式能源(DER)网络来通过能源套利降低能源成本。为了全面评估今天运行的EMS的影响,进行了一个名为UBC Living Lab Project的案例研究。该项目由四个DER组成,分布在UBC校园中,面积超过0.28平方公里。这些DER通过EMS通信网络连接在一起,该网络能够配置每个组件以优化能源使用,从而节省能源。

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