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Energy Cost Optimization and DER Scheduling for Unified Energy Management System of Residential Neighborhood

机译:居民区统一能源管理系统的能源成本优化与DER调度

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Consumers with distributed energy resources (DERs) and intelligent building energy management systems (BEMS) can achieve significant electricity bill reduction by participating in demand response (DR) programs. DR encourages the active consumer to alter their demand profile in response to time-varying electricity tariff or economic incentives. However, large-scale adoption of such DR schemes and BEMS in neighborhood area can lead to rebound peaks when electricity is cheaper. This paper proposes a unified approach to energy management system for a residential neighborhood that mitigates the demand peaks of the neighborhood and provides electricity bill reduction to the participating consumers. An optimization model has been developed that minimizes the energy cost of the participating consumers while reducing aggregated demand peaks in the neighborhood by scheduling the charge-discharge operation of residential storage units and energy sharing among neighbors. The effectiveness of the proposed neighborhood energy management system (NEMS) model is evaluated via a case study for a residential neighborhood in Sydney, Australia with actual electricity meter data and time of use (TOU) tariff structure for the neighborhood. Simulation results indicate the efficacy of the proposed NEMS framework and optimization model in terms of electricity bill reduction and demand peaks mitigation.
机译:拥有分布式能源(DER)和智能建筑能源管理系统(BEMS)的消费者可以通过参与需求响应(DR)计划来大幅减少电费。 DR鼓励积极的消费者根据时变的电价或经济激励措施改变其需求状况。但是,在电价便宜的情况下,在邻区大规模采用此类灾难恢复方案和BEMS可能会导致峰值反弹。本文提出了一种用于居民区的能源管理系统的统一方法,该方法可减轻居民区的需求高峰,并为参与的消费者减少电费。已经开发出一种优化模型,该模型可以通过计划住宅存储单元的充放电操作和邻居之间的能量共享,来最大程度地降低参与的消费者的能源成本,同时减少附近的总需求峰值。拟议的邻里能源管理系统(NEMS)模型的有效性是通过对澳大利亚悉尼某居民区的案例研究进行评估的,其中包括该邻区的实际电表数据和使用时间(TOU)电价结构。仿真结果表明了所提出的NEMS框架和优化模型在减少电费和减少需求高峰方面的功效。

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