DocumentCode
3158512
Title
Determination of maximum supportable receiver wakeup intervals in energy harvesting WSN nodes using a client-server setup
Author
Tan, Wilson M. ; Jarvis, S.A.
Author_Institution
Dept. of Comput. Sci., Performance Comput. & Visualisation Group, Univ. of Warwick, Warwick, UK
fYear
2013
fDate
2-4 Dec. 2013
Firstpage
61
Lastpage
67
Abstract
Energy harvesting wireless sensor network nodes would not be able to operate without duty cycling. In TinyOS, duty cycling is supported through Low Power Listening or LPL. LPL is sender-centric: the longer the wakeup interval, the more power a receiver saves, at the cost of more energy per transmission for the sender. Due to the limitations of energy storage technologies, there is a limit to the sender wakeup interval which energy harvesting senders could support. Currently, the limit could be derived computationally or experimentally. Computational derivation is overly conservative, while manual experimentation is labor intensive. In this paper, we present a protocol which enables sensor nodes to autonomously determine the wakeup interval limit experimentally, using a client-server architecture. Not only does the protocol allow for easier determination of the said limit, it also allows network nodes to adjust to environmental changes that nodes encounter while in deployment, such as capacitor ageing.
Keywords
client-server systems; energy harvesting; radio receivers; wireless sensor networks; client server architecture; client server setup; energy harvesting WSN nodes; energy harvesting wireless sensor network nodes; energy per transmission; energy storage technologies; low power listening; maximum supportable receiver wakeup intervals; Calibration; Capacitors; Energy harvesting; Protocols; Receivers; Servers; Wireless sensor networks; Calibration; Energy efficiency; Energy harvesting; Protocols; Wireless sensor networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Wireless Sensor (ICWISE), 2013 IEEE Conference on
Conference_Location
Kuching
Type
conf
DOI
10.1109/ICWISE.2013.6728780
Filename
6728780
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