Title :
Low Cost Arduino/Android-Based Energy-Efficient Home Automation System with Smart Task Scheduling
Author :
Baraka, Kim ; Ghobril, Marc ; Malek, Salim ; Kanj, Rouwaida ; Kayssi, Ayman
Author_Institution :
Dept. of Electr. & Comput. Eng., American Univ. of Beirut, Beirut, Lebanon
Abstract :
In this paper, we make use of Home Automation techniques to design and implement a remotely controlled, energy-efficient and highly scalable Smart Home with basic features that safeguard the residents´ comfort and security. Our system consists of a house network (sensors and appliance actuators to respectively get information from and control the house environment). As a central controller, we used an Arduino microcontroller that communicates with an Android application, our user interface. Our house network brings together both wireless Zigbee and wired X10 technologies, thus making it a cost-efficient hybrid system. Events can be programmed to be triggered under specific conditions, and this can have a great role in reducing the total energy consumed by some appliances. On the other hand, the system can suggest smart task scheduling. The scheduling algorithm we present is a heuristic for the Resource-constrained-scheduling problem (RCPSP) with hybrid objective function merging both resource-leveling and weighted completion time considerations.
Keywords :
Zigbee; building management systems; centralised control; control engineering computing; energy conservation; home automation; microcontrollers; operating systems (computers); scheduling; telecontrol; Android; Arduino microcontroller; RCPSP; central controller; cost-efficient hybrid system; energy-efficient home automation system; energy-efficient smart home; heuristic scheduling algorithm; house network; hybrid objective function; remotely controlled smart home; resident comfort; resident security; resource-constrained-scheduling problem; resource-leveling; scalable smart home; smart task scheduling; total energy consumption reduction; user interface; weighted completion time; wired X10 technologies; wireless Zigbee; Androids; Home appliances; Home automation; Linear programming; Protocols; Sensors; Wireless communication; Android; Arduino; Energy management; Home automation; Smart scheduling;
Conference_Titel :
Computational Intelligence, Communication Systems and Networks (CICSyN), 2013 Fifth International Conference on
Conference_Location :
Madrid
Print_ISBN :
978-1-4799-0587-4
DOI :
10.1109/CICSYN.2013.47