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Analysis of control strategies for thermally activated building systems under demand side management mechanisms

机译:需求侧管理机制下热激活建筑系统控制策略分析

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摘要

Thermally activated buildings systems (TABS) are systems that integrate heating/cooling devices in the building structure, so that the building elements act as thermal storage and have an active role in the energy supply and demand management. Although TABS are well known systems, there are still open questions in their realization, mainly concerning appropriate control strategies which are influenced by the large thermal inertia. The purpose of this paper is to analyze the influence of demand side management control strategies on the performance of a thermally activated building system applied in a commercial building. The goal is to estimate the potential of TABS for load shifting requested by the electricity grid. The analysis is performed by means of a sample case: first the existing TABS control strategy and then the possible implementation of DSM mechanisms are analyzed. In particular three different demand side management mechanisms are evaluated: (i) a peak shaving strategy, (ii) a random request of switching on/off the system and (iii) a night load shifting strategy. The simulation results show high potential of TABS within the DSM framework, since TABS allow load control while scarcely affect thermal comfort.
机译:热激活建筑系统(TABS)是在建筑结构中集成了加热/冷却装置的系统,因此建筑元素可作为蓄热器,并在能源供需管理中发挥积极作用。尽管TABS是众所周知的系统,但在实现过程中仍存在一些悬而未决的问题,主要涉及受大热惯性影响的适当控制策略。本文的目的是分析需求侧管理控制策略对应用于商业建筑的热激活建筑系统性能的影响。目的是估计TABS在电网要求的负载转移方面的潜力。该分析是通过一个示例案例进行的:首先分析现有的TABS控制策略,然后分析DSM机制的可能实现。特别是评估了三种不同的需求侧管理机制:(i)调峰策略,(ii)开启/关闭系统的随机请求,以及(iii)夜间负载转移策略。仿真结果表明DSBS框架内TABS的潜力很大,因为TABS可以控制负载,而几乎不影响热舒适性。

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