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Implementation of Energy Efficient Thermal Comfort Control for Cyber-Physical Home Systems

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An energy efficient thermal comfort control (EETCC) system has been proposed to improve residents’ thermal comfort by optimizing the energy consumption. Today, most of the research works related to the thermal comfort control deals with the theoretical study of the proposed algorithm. Furthermore, none of these research works considers the implementation of real testbed of smart homes using the cyber-physical systems approach. Thus, the EETCC system is implemented in this paper. We conduct both experiment and computer simulation to evaluate and verify the feasibility of our proposed EETCC system in the cyber-physical smart home systems.
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Keywords: Cyber-Physical Systems; Energy Efficient; Smart Homes; Temperature; Thermal Comfort

Document Type: Research Article

Affiliations: 1: School of Information Science, Japan Advanced Institute of Science and Technology (JAIST), Japan 2: Faculty of Engineering, Universiti Malaysia Sabah (UMS), Malaysia 3: Faculty of Computing and Informatics, Universiti Malaysia Sabah (UMS), Malaysia

Publication date: November 1, 2017

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  • ADVANCED SCIENCE LETTERS is an international peer-reviewed journal with a very wide-ranging coverage, consolidates research activities in all areas of (1) Physical Sciences, (2) Biological Sciences, (3) Mathematical Sciences, (4) Engineering, (5) Computer and Information Sciences, and (6) Geosciences to publish original short communications, full research papers and timely brief (mini) reviews with authors photo and biography encompassing the basic and applied research and current developments in educational aspects of these scientific areas.
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