DocumentCode :
3601597
Title :
An Internet of Things Framework for Smart Energy in Buildings: Designs, Prototype, and Experiments
Author :
Jianli Pan ; Jain, Raj ; Paul, Subharthi ; Vu, Tam ; Saifullah, Abusayeed ; Mo Sha
Author_Institution :
Dept. of Math. & Comput. Sci., Univ. of Missouri, St. Louis, MO, USA
Volume :
2
Issue :
6
fYear :
2015
Firstpage :
527
Lastpage :
537
Abstract :
Smart energy in buildings is an important research area of Internet of Things (IoT). As important parts of the smart grids, the energy efficiency of buildings is vital for the environment and global sustainability. Using a LEED-gold-certificated green office building, we built a unique IoT experimental testbed for our energy efficiency and building intelligence research. We first monitor and collect 1-year-long building energy usage data and then systematically evaluate and analyze them. The results show that due to the centralized and static building controls, the actual running of green buildings may not be energy efficient even though they may be “green” by design. Inspired by “energy proportional computing” in modern computers, we propose an IoT framework with smart location-based automated and networked energy control, which uses smartphone platform and cloud-computing technologies to enable multiscale energy proportionality including building-, user-, and organizational-level energy proportionality. We further build a proof-of-concept IoT network and control system prototype and carried out real-world experiments, which demonstrate the effectiveness of the proposed solution. We envision that the broad application of the proposed solution has not only led to significant economic benefits in term of energy saving, improving home/office network intelligence, but also bought in a huge social implication in terms of global sustainability.
Keywords :
Internet of Things; building management systems; energy conservation; Internet of Things; IoT; LEED-gold-certificated green office building; cloud-computing technologies; control system prototype; energy efficiency; energy saving; global sustainability; network intelligence; networked energy control; smart energy; smart grids; smart location-based automated control; Buildings; Cooling; Correlation; Energy consumption; Energy efficiency; Resistance heating; Energy Efficiency; Energy efficiency; Intelligent Buildings; Internet of Things; Internet of Things (IoT); Location-based Networked Control; Multi-scale Energy-Proportionality; Smart Energy; intelligent buildings; location-based networked control; multiscale energy-proportionality; smart energy;
fLanguage :
English
Journal_Title :
Internet of Things Journal, IEEE
Publisher :
ieee
ISSN :
2327-4662
Type :
jour
DOI :
10.1109/JIOT.2015.2413397
Filename :
7061425
Link To Document :
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