DocumentCode
84069
Title
Analysis and Experimental Verification of Frequency-Based Interference Avoidance Mechanisms in IEEE 802.15.4
Author
Tytgat, Lieven ; Yaron, Opher ; Pollin, Sofie ; Moerman, Ingrid ; Demeester, Piet
Author_Institution
IBCN - iMinds, Ghent Univ., Ghent, Belgium
Volume
23
Issue
2
fYear
2015
fDate
Apr-15
Firstpage
369
Lastpage
382
Abstract
More and more wireless networks are deployed with overlapping coverage. Especially in the unlicensed bands, we see an increasing density of heterogeneous solutions, with very diverse technologies and application requirements. As a consequence, interference from heterogeneous sources-also called cross-technology interference-is a major problem causing an increase of packet error rate (PER) and decrease of quality of service (QoS), possibly leading to application failure. This issue is apparent, for example, when an IEEE 802.15.4 wireless sensor network coexists with an IEEE 802.11 wireless LAN, which is the focus of this work. One way to alleviate cross-technology interference is to avoid it in the frequency domain by selecting different channels. Different multichannel protocols suitable for frequency-domain interference avoidance have already been proposed in the literature. However, most of these protocols have only been investigated from the perspective of intratechnology interference. Within this work, we create an objective comparison of different candidate channel selection mechanisms based on a new multichannel protocol taxonomy using measurements in a real-life testbed. We assess different metrics for the most suitable mechanism using the same set of measurements as in the comparison study. Finally, we verify the operation of the best channel selection metric in a proof-of-concept implementation running on the testbed.
Keywords
Zigbee; protocols; quality of service; radiofrequency interference; IEEE 802.11 wireless LAN; IEEE 802.15.4 wireless sensor network; PER; QoS; analysis verification; channel selection mechanisms; cross technology interference; experimental verification; frequency based interference avoidance mechanisms; intratechnology interference; multichannel protocol taxonomy; objective comparison; packet error rate; quality of service; unlicensed bands; wireless networks; IEEE 802.11 Standards; Interference; Measurement; Protocols; Switches; Taxonomy; Zigbee; IEEE 802.11; IEEE 802.15.4; MAC; RDT; WiFi; ZigBee; interference avoidance; medium access control; receiver directed transmission; wireless sensor networks;
fLanguage
English
Journal_Title
Networking, IEEE/ACM Transactions on
Publisher
ieee
ISSN
1063-6692
Type
jour
DOI
10.1109/TNET.2014.2300114
Filename
6729100
Link To Document