校园零能耗办公楼蓄电池储能系统最优容量配置

Yuan Cao, Kun Yu, Xingying Chen, Le Bu, Fei Mei, H. Hua, Yu Zheng
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摘要

为了减少建筑运行过程中的温室气体排放,在建筑中建立光伏系统已成为一种有效的手段。然而,光伏发电具有较大的间歇性和不确定性,使得零能耗建筑(ZEB)的能耗难以保证。为了解决这一问题,满足不同时间尺度下建筑负荷的能耗,需要安装电池储能系统,并合理配置储能容量。不仅要考虑经济因素,而且要同时考虑技术因素。本文分析了校园办公楼负荷与普通商业办公楼负荷的能耗差异,并对其进行建模。然后在目标函数中考虑技术经济指标,对校园办公楼BS容量进行优化。仿真结果表明,本文所采用的方法可以有效地获得建筑蓄电池储能系统的最优容量配置,可以将容量配置方法更全面地用于建筑BS,满足不同场景的多样化需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Capacity Configuration of Battery Storage System for Zero Energy Office Building on Campus
To reduce greenhouse gas emissions during the operation of buildings, establishing PV systems in buildings has become an effective means. However, PV generation has large intermittency and uncertainty, which makes it difficult to ensure the energy consumption of zero energy building (ZEB). To solve this problem and meet the energy consumption of building loads at different time scales, the battery storage (BS) needs to be installed and the storage capacity needs to be reasonably configured. Not only economic factors but also technical factors must be taken into account at the same time. In this paper, the differences in energy consumption between campus office building loads and ordinary commercial office building loads are analyzed, and then the BS is modelled. After that, the technical and economic indicators are taken into account in the objective function to optimize the capacity of the BS for campus office buildings. The simulation results show that the method adopted in this paper can effectively obtain the optimal capacity configuration for the building battery storage system, and the capacity configuration method can be used for building BS in a more comprehensive way to meet the diverse needs of different scenarios.
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