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Energy Management Model for Energy District Prosumers and Utility: A Case Study of Texas State

机译:能源区生产者和公用事业公司的能源管理模型:以德克萨斯州为例

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In recent, Smart Grid is heading towards mega grid with the integration of various consumer categories, renewable energy penetration, bi-directional communication infrastructure, and thousands of power buses interconnected in wide area systems. With this growing trend, new terminologies evolve, such as `Prosumers in energy district' that refers to a special class of consumers residing in the vicinity with the capability of producing and consuming energy. Prosumers enhance the smart grid infrastructure in terms of grid-support, bi-directional energy flow, and stability enhancement. With Energy District (ED) as a generating zone, the utility must undergo a Service Level Agreement (SLA) that mutually satisfies the financial benefits. Considering above, we propose a bi-directional energy management model for an ED and Utility. Moreover, a Coalition Manager (CM) is introduced that statistically correlates the weather parameters with electrical load consumption of consumers and controls the energy flows between both parties under the principle of Service SLA. Furthermore, with climatic drifts, an optimization model is developed that maximizes the revenue of the utility. Under SLA umbrella, on Prosumers end, the cost of energy consumption ($/MWh) is minimized and energy surplus is maximized. To validate the aforementioned model, real-time data of Texas State (US) is modeled and analyzed.
机译:近年来,智能电网正朝着大型电网发展,它将各种消费者类别,可再生能源的渗透,双向通信基础设施以及成千上万个在广域系统中互连的电源总线集成在一起。随着这种增长趋势的发展,出现了新的术语,例如“能源区的生产者”,指的是居住在附近并具有生产和消费能源能力的特殊类别的消费者。消费者在电网支持,双向能量流和稳定性增强方面增强了智能电网基础设施。如果将能源区(ED)作为发电区,则公用事业必须遵守相互满足其经济利益的服务水平协议(SLA)。考虑到上述问题,我们提出了用于ED和Utility的双向能源管理模型。此外,引入了联盟管理器(CM),该联盟管理器将天气参数与用户的电力负载消耗进行统计关联,并根据服务SLA的原则控制双方之间的能量流。此外,随着气候的漂移,开发了一种优化模型,该模型可以最大化公用事业的收益。在SLA的保护下,在Prosumers端,能源消耗的成本($ / MWh)最小化,能源剩余最大化。为了验证上述模型,对德克萨斯州(美国)的实时数据进行了建模和分析。

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