DocumentCode
3498049
Title
The eCOMBAT: Energy Consumption Monitoring Tool for Battery Powered Communication Device
Author
Olwal, Thomas Otieno ; Montsi, Litsietsi ; Mofolo, Mofolo ; Mekuria, Fisseha
Author_Institution
Meraka Inst., Pretoria, South Africa
fYear
2013
fDate
9-12 Sept. 2013
Firstpage
1
Lastpage
5
Abstract
The ever rising demand for energy all over the world, following the dwindling of the fossil fuel resources and adverse effects on the climate change, has compelled the need to save energy and lower the cost of energy utilization in the wireless computing, communication and networking applications. One of the best ways to obtain energy-efficient communication and networking is to invest in the renewable energy sources to charge batteries for communication devices and to develop smart energy consumption monitoring tools. As a result, this paper presents an energy monitoring software tool hereby referred to as the `eCOMBAT´ which is aimed at getting real-time information on the quantity of energy consumed by the communication and networking device. The knowledge of such data on time may enable the device user to reduce energy consumption thereby lowering the CO2 emissions into the environment. This paper proposes an integrated battery´s discharge and device´s energy consumption model; the description of the developed tool and experimental results of the tool obtained via a user friendly and well designed graphic user interface (GUI).
Keywords
computerised monitoring; energy conservation; energy consumption; green computing; mobile handsets; power aware computing; secondary cells; telecommunication power supplies; GUI; battery powered communication device; climate change; communication applications; eCOMBAT; energy efficient communication; energy efficient networking; fossil fuel resources; graphic user interface; networking applications; renewable energy sources; smart energy consumption monitoring tools; wireless computing; Batteries; Discharges (electric); Emulation; Energy consumption; Green products; Mathematical model; Monitoring; State-of-charge; eCOMBAT; rechargeable battery;
fLanguage
English
Publisher
ieee
Conference_Titel
AFRICON, 2013
Conference_Location
Pointe-Aux-Piments
ISSN
2153-0025
Print_ISBN
978-1-4673-5940-5
Type
conf
DOI
10.1109/AFRCON.2013.6757872
Filename
6757872
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