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Modelling and Valuing Multi-Energy Flexibility from Community Energy Systems

机译:建立和评估社区能源系统的多能源灵活性

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摘要

Demand side response is seen as an important resource to provide flexibility into to the grid. This paper presents a smart community optimization model, implemented using a mixed integer linear programming technique, which is based upon physical models of the building, battery energy storage, thermal energy storage, and energy conversion devices. Various sources of flexibility, including battery energy storage, thermal energy storage, and building thermal storage, have been assessed applying different objectives. Analyses of community operational behavior and of annual cash flows are carried out to understand the benefit and feasibility of different flexibility options under both cost minimization and electricity self-sufficiency objectives. Among all the flexibility options, battery energy storage can bring the greatest operational revenue to the community, under a cost minimization objective. In contrast, electricity self-sufficiency might not be attractive to consumers and communities who would like to ‘leave the grid’, as it may lead to significant revenue losses.
机译:需求方响应被视为提供灵活性的重要资源。本文提出了一种智能社区优化模型,该模型使用混合整数线性规划技术实现,该模型基于建筑物,电池能量存储,热能存储和能量转换设备的物理模型。已应用不同的目标评估了各种灵活性来源,包括电池能量存储,热能存储和建筑物热能存储。进行了社区运营行为和年度现金流量分析,以了解在成本最小化和电力自给自足的目标下,不同灵活性方案的收益和可行性。在所有的灵活性选项中,电池能量存储可以在最小化成本的目标下为社区带来最大的运营收入。相比之下,电力自给自足对想要“离开电网”的消费者和社区可能没有吸引力,因为这可能会导致巨大的收入损失。

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