Investigation of the effect of the envelope on building thermal storage performance under model predictive control by dynamic pricing

IF 5.4 Q2 ENERGY & FUELS
Zhichen Wei, John Calautit
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引用次数: 9

Abstract

Dynamic pricing is designed for the load shaping to help match the amount of the energy demand to the energy supply capacity. Since the buildings’ characteristics influence the performance of the energy shifting, renovation of the building towards a higher energy flexibility is worth investigating. This study evaluated the effect of the envelope on building thermal storage performance. A model predictive control (MPC) was developed to achieve a multi-objective control i.e., indoor comfort temperature and minimise the total energy cost. MPC automatically triggered the energy storage during the low price periods and used the stored energy during the high price periods. The results confirmed the ability of MPC on peak demand reduction up to 45% electricity cost. Besides, the results also demonstrated the ability of heavyweight thermal mass in terms of reducing energy consumption and shifting a greater high price energy to the low price times. Therefore, adding insulation layers into the lightweight thermal mass is highly recommended, especially for the places experiencing the significant mismatch between the demand and supply during daily peaks or the areas scheduling a large amount of intermittent renewable energy source in the energy production.

Abstract Image

动态定价模型预测控制下围护结构对建筑蓄热性能影响的研究
动态定价是为了使电力需求与电力供应能力相匹配而设计的。由于建筑物的特性影响着能量转换的性能,因此对建筑物进行更高能量灵活性的改造是值得研究的。本研究评估了围护结构对建筑蓄热性能的影响。提出了一种模型预测控制(MPC),以实现室内舒适温度的多目标控制,并使总能源成本最小化。MPC在电价较低时自动触发储能,在电价较高时自动使用储能。结果证实了MPC在峰值需求上降低45%电力成本的能力。此外,结果还证明了重量级热质量在降低能耗和将更多的高价能源转移到低价时间方面的能力。因此,强烈建议在轻质热质量中添加保温层,特别是在日常高峰时段供需严重不匹配的地方或在能源生产中调度大量间歇性可再生能源的地区。
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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来源期刊
Smart Energy
Smart Energy Engineering-Mechanical Engineering
CiteScore
9.20
自引率
0.00%
发文量
29
审稿时长
73 days
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