DocumentCode
3590695
Title
0, 1, 2, many — A classroom occupancy monitoring system for smart public buildings
Author
Paci, Francesco ; Brunelli, Davide ; Benini, Luca
Author_Institution
Univ. of Bologna, Bologna, Italy
fYear
2014
Firstpage
1
Lastpage
6
Abstract
In recent years, research in IoT-enabled smart building solutions has accelerated significantly, thanks to the coming of age of wireless distributed sensing hardware, protocols and software. Moreover the computational capability of mobile and wireless platforms is now significant and complex tasks can be distributed and executed over remote low-power nodes. Data can be processed locally on-board to reduce network overhead and to increase architectural scalability. We present an heterogeneous sensor network that makes use of low power sensors and cameras to monitor a building´s environmental conditions and to correlate them with the number of people inside the monitored environment. Occupancy monitoring is a critical missing link in smart buildings especially for rooms which may have large number of occupants (e.g. classrooms), because it heavily affects control strategies and impacts environmental conditions. Our system estimates the number of people in classrooms by using a novel people counting algorithm which runs in real-time, even on limited resources platforms. Finally, data is collected in a IoT-cloud-based infrastructure, and used to trigger remote actions.
Keywords
Internet of Things; building management systems; cameras; computerised monitoring; home automation; wireless sensor networks; IoT-cloud-based infrastructure; IoT-enabled smart building solutions; architectural scalability; building environmental conditions; cameras; classroom occupancy monitoring system; heterogeneous sensor network; low power sensors; network overhead reduction; people counting algorithm; protocols; remote low-power nodes; smart public buildings; wireless distributed sensing hardware; Accuracy; Cameras; Entropy; Feature extraction; Monitoring; Protocols; Wireless sensor networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Design and Architectures for Signal and Image Processing (DASIP), 2014 Conference on
Type
conf
DOI
10.1109/DASIP.2014.7115644
Filename
7115644
Link To Document