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Household level distributed energy management system integrating renewable energy sources and electric vehicles.

机译:集成可再生能源和电动汽车的家庭级分布式能源管理系统。

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摘要

To reduce the burden on data communication in smart girds, household level distributed energy management systems have become increasingly vital due to their capability of distributed intelligence and scheduling devices. This paper studies the optimal management of storage and electric vehicles at a household level when subject to financial constraints. A model using a real-time pricing structure is used to minimise the final consumer cost, whilst responding to power consumption limits set by the supplier. Implementation of the limits and pricing structure allow the supplier to better balance changes and discrepancies in both demand values and generation values. Using real data, models for solar generation, household load demand, and the pricing structure are proposed and integrated into the overall model for the household system. The model for the household system optimises the power taken from the grid and the power stored for the lowest end cost to the user. A series of laboratory evaluations are run to compare the effects of the electric vehicle, solar generation and limits on the household, and considerations are made to the financial and practical implications of these effects. Evaluation results show important benefits from soft limiting household consumption. This allows a more robust and efficient smart grid system that creates better communication between the supplier and the consumer.
机译:为了减轻智能电网中数据通信的负担,家庭级分布式能源管理系统由于具有分布式智能和调度设备的功能而变得越来越重要。本文研究了在经济困难的情况下,家庭层面的仓储和电动汽车的最佳管理。使用实时定价结构的模型可最大程度地降低最终消费者的成本,同时响应供应商设置的功耗限制。限制和定价结构的实施使供应商可以更好地平衡需求值和发电值的变化和差异。利用实际数据,提出了太阳能发电,家庭负荷​​需求和价格结构的模型,并将其集成到家庭系统的整体模型中。家用系统的模型可优化从电网获取的功率和存储的功率,以使用户获得最低的最终成本。进行了一系列实验室评估,以比较电动汽车,太阳能发电和限制对家庭的影响,并考虑这些影响的财务和实际影响。评估结果表明,对家庭消费实行软限制具有重要的好处。这允许更健壮和高效的智能电网系统,从而在供应商和消费者之间建立更好的通信。

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