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Solar-photovoltaic-power-sharing-based design optimization of distributed energy storage systems for performance improvements

机译:基于太阳能光伏电力共享的分布式能量存储系统的性能改进设计优化

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Proper energy storage system design is important for performance improvements in solar power shared building communities. Existing studies have developed various design methods for sizing the distributed batteries and shared batteries. For sizing the distributed batteries, most of the design methods are based on single building energy mismatch, but they neglect the potentials of energy sharing in reducing battery capacity, thereby easily causing battery oversizing problem. For sizing the shared batteries, the existing design methods are based on a community aggregated energy mismatch, which may avoid battery oversizing but cause another severe problem, i.e., excessive electricity losses in the sharing process caused by the long-distance power transmissions. Therefore, this study proposes a hierarchical design method of distributed batteries in solar power shared building communities, with the purpose of reducing the battery capacity and minimizing the energy loss in the sharing process. The developed design method first considers all the distributed batteries as a virtual ?shared? battery and searches its optimal capacity using genetic algorithm. Taking the optimized capacity as a constraint, the developed method then optimizes the capacities of the distributed batteries for minimizing the energy loss using non-linear programming. Case studies on a building community show that compared with an existing design method, the proposed design can significantly reduce the battery capacity and electricity loss in the sharing process, i.e. 36.6% capacity reduction and 55% electricity loss reduction. This study integrates the considerations of aggregated energy needs, local PV power sharing, advanced community control, and battery storage sharing, which will be useful to optimize three functions (energy efficiency, energy production and flexibility) in a positive energy district towards energy surplus and climate neutrality. ? 2021 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
机译:适当的储能系统设计对于太阳能共用建筑社区的性能改进是重要的。现有研究开发了各种设计方法,用于施加分布式电池和共用电池。为了施加分布式电池,大部分设计方法都基于单一建筑能量不匹配,但它们忽略了降低电池容量的能量共享的潜力,从而容易引起电池超大问题。为了大筛共用电池,现有的设计方法基于社区聚合能量不匹配,这可能避免电池超大,但导致另一个严重的问题,即由长距离动力传输引起的共享过程中的过度电力损失。因此,本研究提出了太阳能共用建筑社区分布式电池的分层设计方法,目的是降低电池容量,并最大限度地减少共享过程中的能量损失。开发的设计方法首先将所有分布式电池视为虚拟?共享?电池并使用遗传算法搜索其最佳能力。将优化的容量作为约束,开发方法然后优化分布式电池的容量,以最小化使用非线性编程的能量损失。建筑社区的案例研究表明,与现有的设计方法相比,所提出的设计可以显着降低共享过程中的电池容量和电力损失,即36.6%的容量降低和55%的电力损失减少。本研究综合了汇总能源需求,本地光伏电力共享,先进的社区控制和电池存储共享的考虑,这将有助于优化正能源区的三个功能(能效,能源生产和灵活性,以实现能源盈余和气候中立。还是2021提交人。由elsevier有限公司发布这是CC下的开放式访问文章(http://creativecommomons.org/licenses/by/4.0/)。

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