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Multiagent-Based Transactive Energy Management Systems for Residential Buildings With Distributed Energy Resources

机译:具有分布式能源的住宅建筑物的多元素纵向能量管理系统

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Proper management of building loads and distributed energy resources (DER) can offer grid assistance services in transactive energy (TE) frameworks besides providing cost savings for the consumer. However, most TE models require building loads and DER units to be managed by external entities (e.g., aggregators), and in some cases, consumers need to provide critical information related to their electricity demand and usage, which hampers their privacy. This article introduces a transactive energy management framework for the buildings in a residential neighborhood to address grid overloading and cost optimization of the buildings. The decentralized coordination for the energy management system is realized by using a multiagent system architecture, which provides the consumers with full decision-making authority and preserves their privacy. A new event-triggered transactive market algorithm is developed, where the buildings trade energy to maximize profits, while the regional grid operator procures energy-supply flexibility of active consumers to prevent transformer overloading. A two-stage energy management system is developed for the residential buildings that schedules building loads and DER units in day-ahead stage to minimize cost and inconveniences for the consumer while participating in the real-time transactive market to maximize profits. An optimal bidding model is developed for the buildings that incorporates the degradation of residential storage devices for energy trading. Case studies and analyses with actual Australian building data and electricity tariff structures indicate the efficacy of the proposed methodology for effective mitigation of transformer overloading at a negligible cost compared to transformer replacement cost. Results also indicate that the proposed system can provide 15-20% cost savings for the consumers while minimizing their inconveniences and degradation of storage devices.
机译:建筑负荷的妥善管理和分布式能源(DER)可以提供在中介的能量(TE)框架网格援助服务,除了为消费者提供节约成本。然而,大多数TE模型都需要建立负载并由外部实体(例如,聚合器)管理的负载和设备,并且在某些情况下,消费者需要提供与其电力需求和使用相关的关键信息,这些信息妨碍了他们的隐私。本文介绍了住宅邻域中建筑物的缩写能源管理框架,以解决建筑物的网格超载和成本优化。通过使用多层系统架构实现了能源管理系统的分散协调,为消费者提供了完全决策权,并保留了他们的隐私。一个新的事件触发中介的市场算法开发,其中建筑能源交易利润最大化,而当前的用户区域电网运营商促致能源供应的弹性,防止变压器过载。为住宅建筑开发了两阶段能源管理系统,该建筑物计划在前方舞台上建造负载和DER单位,以尽量减少消费者的成本和不便,同时参与实时缩小市场以最大限度地提高利润。为建筑物开发了最佳竞标模型,该建筑物包括用于能源交易的住宅存储设备的降级。实际澳大利亚建筑数据和电力关税结构的案例研究和分析表明,与变压器更换成本相比,该方法可以以可忽略的成本实现变压器过载的有效减轻的效果。结果还表明,该系统可为消费者提供15-20%的成本节约,同时最大限度地减少存储设备的不便和降低。

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