使用原型灰箱建模方法对住宅部门的供热负荷管理和能源灵活性进行预测分析:应用于魁北克省的一栋实验房屋。

IF 1.8 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY
Journal of Building Physics Pub Date : 2024-11-01 Epub Date: 2024-09-20 DOI:10.1177/17442591241267833
Matin Abtahi, Andreas Athienitis, Benoit Delcroix
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引用次数: 0

摘要

本文介绍了一种开发原型灰盒模型的方法,并将其用于基于经济模型的预测控制算法,以模拟针对魁北克省住宅部门新引入的静态分时电价 Flex-D 的最佳供热负荷管理。通过案例研究对该方法进行了评估,其中使用了魁北克水电公司一栋两层无人居住的研究用房的现场测量数据,以启发式的逐层分区方法开发了一个 11R6C 网络,并计算了下一个控制周期的最佳电加热输入序列。在费率 Flex-D 条件下,经过适当调整的基于经济模型的预测控制显示,在室内空气温度与参考设定点的平均偏差最小的情况下,与参考运行方式相比,每天的供暖成本有可能降低约 30%。此外,对响应对天气预报不确定性的敏感性分析表明,对基于经济模型的预测控制性能影响最大的非受控输入是结构价格信号,因此天气预报不确定性的影响可以忽略不计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Predictive heating load management and energy flexibility analysis in residential sector using an archetype gray-box modeling approach: Application to an experimental house in Québec.

This paper presents a methodology to develop archetype gray-box models and use them in an economic model-based predictive control algorithm to simulate optimal heating load management in response to a newly-introduced static time-of-use tariff for Québec's residential sector, rate Flex-D. The methodology is evaluated through a case study, wherein in situ measurements from a two-storey unoccupied research house of Hydro-Québec are used to develop an 11R6C network with a heuristic zoning-by-floor approach and compute the sequence of optimal electric heating input for the next control horizon. Properly-tuned economic model-based predictive control under rate Flex-D shows potential for an approximately 30% reduction in daily heating cost compared to the reference operation, with a minimal average deviation of indoor air temperature from the reference setpoint. Also, the analysis of the response's sensitivity to weather forecast uncertainties indicates that the most influential uncontrolled input directing the performance of economic model-based predictive control is the structure price signal, rendering the impact of uncertainty in the weather forecast negligible.

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来源期刊
Journal of Building Physics
Journal of Building Physics 工程技术-结构与建筑技术
CiteScore
5.10
自引率
15.00%
发文量
10
审稿时长
5.3 months
期刊介绍: Journal of Building Physics (J. Bldg. Phys) is an international, peer-reviewed journal that publishes a high quality research and state of the art “integrated” papers to promote scientifically thorough advancement of all the areas of non-structural performance of a building and particularly in heat, air, moisture transfer.
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