Development of a Personalized Thermal Comfort Driven Controller for Hvac Systems

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Date

2021

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Volume Title

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Pergamon-elsevier Science Ltd

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Green Open Access

Yes

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Abstract

Increasing thermal comfort and reducing energy consumption are two main objectives of advanced HVAC control systems. In this study, a thermal comfort driven control (PTC-DC) algorithm was developed to improve HVAC control systems with no need of retrofitting HVAC system components. A case building located in Izmir Institute of Technology Campus-Izmir-Turkey was selected to test the developed system. First, wireless sensors were installed to the building and a mobile application was developed to monitor/ collect temperature, relative humidity and thermal comfort data of an occupant. Then, the PTC-DC algorithm was developed to meet the highest occupant thermal comfort as well as saving energy. The prototypes of the controller were tested on the case building from July 3rd, 2017 to November 1st, 2018 and compared with a conventional PID controller. The results showed that the developed control algorithm and conventional controller satisfy neutral thermal comfort for 92 % and 6 % of total measurement days, respectively. From energy consumption point of view, the PTC-DC decreased energy consumption by 13.2 % compared to the conventional controller. Consequently, the PTC-DC differs from other works in the literature that the prototype of PTC-DC can be easily deployed in real environments. Moreover, the PTC-DC is low-cost and user-friendly. (c) 2021 Elsevier Ltd. All rights reserved.

Description

Simani, Silvio/0000-0003-1815-2478; Gokcen Akkurt, Gulden/0000-0002-3444-9610

Keywords

HVAC systems, personalised thermal comfort, HVAC control, Fuzzy Logic, energy consumption, HVAC systems, personalised thermal comfort, energy efficiency, HVAC control, Fuzzy Logic, energy consumption

Turkish CoHE Thesis Center URL

Fields of Science

0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

Citation

WoS Q

Q1

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Q1
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OpenCitations Citation Count
36

Source

Energy

Volume

237

Issue

Start Page

121568

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CrossRef : 15

Scopus : 41

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Mendeley Readers : 60

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5.431499

Sustainable Development Goals

7

AFFORDABLE AND CLEAN ENERGY
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