Autonomic Management Architecture for Multi-HVAC Systems in Smart Buildings.

This article proposes a self-managing architecture for multi-HVAC systems in buildings, based on the “Autonomous Cycle of Data Analysis Tasks” concept. A multi-HVAC system can be plainly seen as a set of HVAC subsystems, made up of heat pumps, chillers, cooling towers or boilers, among others. Our a...

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Bibliographic Details
Authors: Aguilar, J., Garcés Jiménez, Alberto, Gallego Salvador, Nuria, Gutiérrez de Mesa, José Antonio, Gómez Pulido, José Manuel, García Tejedor, Álvaro José
Format: article
Publication Date:2019
Country:España
Institution:Universidad Francisco de Vitoria
Repository:DDFV. Repositorio Institucional de la Universidad Francisco de Vitoria
Language:English
OAI Identifier:oai:ddfv.ufv.es:10641/1721
Online Access:http://hdl.handle.net/10641/1721
Access Level:Open access
Description
Summary:This article proposes a self-managing architecture for multi-HVAC systems in buildings, based on the “Autonomous Cycle of Data Analysis Tasks” concept. A multi-HVAC system can be plainly seen as a set of HVAC subsystems, made up of heat pumps, chillers, cooling towers or boilers, among others. Our approach is used for improving the energy consumption, as well as to maintain the indoor comfort, and maximize the equipment performance, by means of identifying and selecting of a possible multi-HVAC system operational mode. The multi-HVAC system operational modes are the different combinations of the HVAC subsystems. The proposed architecture relies on a set of data analysis tasks that exploit the data gathered from the system and the environment to autonomously manage the multi-HVAC system. Some of these tasks analyze the data to obtain the optimal operational mode in a given moment, while others control the active HVAC subsystems. The proposed model is based on standard standard HVAC mathematical models, that are adapted on the fly to the contextual data sensed from the environment. Finally, two case studies, one with heterogeneous and another with homogeneous HVAC equipment, show the generality of the proposed autonomous management architecture for multi-HVAC systems.