Estimation of effective thermal parameters of heating sources based on dynamic measurments in smart home

O. Sinkevych, L. Monastyrskii, B. Sokolovskii, Yaroslav Boyko
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Abstract

This work is devoted to the method of determining the effective thermal parameters of heating sources in a smart home, which involves a combination of algorithms for data analysis and the equation of the physical process of heat transfer. The use of such parameters allows one to create software and hardware solutions for modeling the thermal map of the house, as well as to analyze energy consumption using the machine learning models. Since, for the most part, the total consumption of heating energy is known, it is of interest to determine the part of the energy that corresponds to the individual heating sources. To this end, the article proposes a mathematical model and algorithm for estimating the effective thermal characteristics of heating sources based on the heat transfer equation and data analysis approaches that can be used to obtain information about individual heating sources. The task of determining such parameters is reduced to two stages. At the first stage, using the finite-difference approach to the heat transfer equation, the effective thermal parameter of the heating sources is determined. Further, according to the data of energy consumption and distributions of room temperatures and temperatures on the surface of heating elements, by applying data analysis methods, an algorithm for estimating individual effective thermal characteristics of heating elements installed in rooms is proposed.
智能家居中基于动态测量的热源有效热参数估计
这项工作致力于确定智能家居中热源的有效热参数的方法,该方法涉及数据分析算法和传热物理过程方程的结合。使用这些参数可以创建软件和硬件解决方案来建模房屋的热图,以及使用机器学习模型分析能源消耗。由于在大多数情况下,加热能量的总消耗是已知的,因此确定与各个加热源对应的能量部分是有意义的。为此,本文提出了一种基于传热方程和数据分析方法估算热源有效热特性的数学模型和算法,该模型和算法可用于获取单个热源的信息。确定这些参数的任务被简化为两个阶段。第一阶段,采用有限差分法求解传热方程,确定热源的有效热参数;在此基础上,根据能耗数据、房间温度分布和加热元件表面温度分布,运用数据分析方法,提出了一种估算房间内安装的加热元件各个有效热特性的算法。
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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