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Coordinated Operation of a Neighborhood of Smart Households Comprising Electric Vehicles, Energy Storage and Distributed Generation

机译:包含电动汽车,储能和分布式发电的智能家居社区的协调运作

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In this paper, the optimal operation of a neighborhood of smart households in terms of minimizing the total energy procurement cost is analyzed. Each household may comprise several assets such as electric vehicles, controllable appliances, energy storage and distributed generation. Bi-directional power flow is considered both at household and neighborhood level. Apart from the distributed generation unit, technological options such as vehicle-to-home and vehicle-to-grid are available to provide energy to cover self-consumption needs and to inject excessive energy back to the grid, respectively. The energy transactions are priced based on the net-metering principles considering a dynamic pricing tariff scheme. Furthermore, in order to prevent power peaks that could be harmful for the transformer, a limit is imposed to the total power that may be drawn by the households. Finally, in order to resolve potential competitive behavior, especially during relatively low price periods, a simple strategy in order to promote the fair usage of distribution transformer capacity is proposed.
机译:本文从最小化总能源采购成本的角度分析了智能家庭邻域的最优运营。每个家庭可能包括几项资产,例如电动汽车,可控设备,储能和分布式发电。在家庭和社区级别都考虑了双向潮流。除了分布式发电机组外,还可以使用诸如车辆到家庭和车辆到电网的技术选择来提供能量以满足自用需求,并将多余的能量分别注入电网。能源交易基于考虑了动态定价电价方案的净计量原则进行定价。此外,为了防止可能对变压器有害的功率峰值,对家庭可能消耗的总功率施加了限制。最后,为了解决潜在的竞争行为,特别是在相对较低的价格时期,提出了一种简单的策略,以促进配电变压器容量的合理使用。

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