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Optimum community energy storage for renewable energy and demand load management

机译:用于可再生能源和需求负荷管理的最佳社区储能

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摘要

While the management of PV generation is the prime application of residential batteries, they can deliver additional services in order to help systems to become cost-competitive. They can level-out the demand and potentially reduce the cost and emissions of the energy system by reducing demand peaks. In this study, community energy storage (CES) is optimised to perform both PV energy time-shift and demand load shifting (using retail tariffs with varying prices blocks) simultaneously. The optimisation method obtains the techno-economic benefits of CES systems as a function of the size of the community ranging from a single home to a 100-home community in two different scenarios for the United Kingdom: the year 2020 and a hypothetical zero emissions target. It is demonstrated that the levelised cost and levelised value of CES systems reach intermediate values to those achieved when both applications are performed independently. For the optimal performance of a battery system being charged from both local PV plants and the grid, our results suggest that the battery should be sized suitable to ensure it can fully discharge during the peak period.
机译:虽然光伏发电的管理是住宅电池的主要应用,但它们可以提供其他服务,以帮助系统变得具有成本竞争力。它们可以使需求平稳,并可以通过减少需求高峰来降低能源系统的成本和排放。在这项研究中,对社区储能(CES)进行了优化,以同时执行PV能源时移和需求负荷转移(使用具有不同价格块的零售价)。该优化方法获得了CES系统的技术经济收益,该收益是社区规模的函数,在英国的两种不同情况下(从2020年到假设的零排放目标),范围从单个家庭到100个家庭。事实证明,CES系统的平准化成本和平准价值达到了两个应用程序独立执行时所达到的中间值。为了使从本地光伏电站和电网中充电的电池系统达到最佳性能,我们的结果表明,电池的尺寸应合适,以确保在高峰期可以完全放电。

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