Break-Even Analysis of Battery Energy Storage in Buildings Considering Time-of-Use Rates

Mucun Sun, Chih-Lun Chang, Jie Zhang, Ali Mehmani, P. Culligan
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引用次数: 9

Abstract

As energy consumption in residential and commercial buildings continues to grow, demand-side management (DSM) for energy systems becomes crucial, because DSM can shift energy use from peak to off-peak hours. In order to realize peak load shifting, energy storage systems (ESSs) can be integrated into buildings to store energy during off-peak hours and discharge energy in peak hours. However, installing a large number of ESSs in individual buildings can complicate DSM and increase the overall capital cost. In this paper, a cost-effective DSM strategy is proposed to address this energy management challenge. The break-even cost of battery storage in a building is explored through a process of two-step optimization in conjunction with different tariff structures. A number of scenarios are performed to conduct cost analyses of the storage-based building energy system under different time-of-use rate structures. The performance of the DSM strategy in the battery break-even cost, is explored using a particle swarm optimization algorithm based on the size of energy storage and priced-based constraints of the energy system. Results of a case study show that the proposed approach can reduce the peak-to-average ratio of the total energy demand to the total energy costs. In addition, as the percentage reductions in yearly maximum energy peaks increase, the optimal battery cost becomes progressively more economical to building owners.
考虑时间利用率的建筑物电池储能盈亏平衡分析
随着住宅和商业建筑的能源消耗持续增长,能源系统的需求侧管理(DSM)变得至关重要,因为DSM可以将能源使用从高峰时间转移到非高峰时间。为了实现负荷的调峰,可以在建筑物中集成储能系统,在非高峰时段储能,在高峰时段放电。然而,在单个建筑物中安装大量的ess会使DSM复杂化,并增加总体资本成本。本文提出了一种具有成本效益的DSM策略来解决这一能源管理挑战。结合不同的电价结构,通过两步优化的过程来探索建筑物电池储能的盈亏平衡成本。通过多个场景对不同分时结构下的储能建筑能源系统进行成本分析。采用基于储能规模和基于价格约束的粒子群优化算法,研究了DSM策略在电池盈亏平衡成本下的性能。实例研究结果表明,该方法可以降低总能源需求与总能源成本的峰均比。此外,随着年度最大能源峰值百分比的降低,最佳电池成本对建筑业主来说变得越来越经济。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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