DocumentCode :
824377
Title :
Interference modeling and performance of Bluetooth MAC protocol
Author :
De Morais Cordeiro, C. ; Agrawal, Dharma P. ; Sadok, Djamel Hadj
Author_Institution :
Center for Distributed & Mobile Comput., Univ. of Cincinnati, OH, USA
Volume :
2
Issue :
6
fYear :
2003
Firstpage :
1240
Lastpage :
1246
Abstract :
The emergence of Bluetooth as a default radio interface has allowed handheld electronic devices to be instantly interconnected as ad hoc networks. These short-range ad hoc wireless networks, called piconets, operate in the unlicensed 2.4-GHz ISM (Industrial-Scientific-Medical) band where devices may be used to configure single or overlapping piconets, known as scatternet. As all piconets operate in the same frequency band, the presence of multiple piconets in the vicinity may create interference on signal reception. This paper employs a signal capture model to study the piconet MAC performance, taking inter-piconet interference into consideration. This model leads to several important mathematical relationships for Bluetooth networks, including successful packet transmission probability. Furthermore, our model and anticipated throughput are validated using extensive simulation. These results indicate that Bluetooth throughput is affected by multiple piconet interference. Definitely, our model can be considered to provide a solid foundation for future interference aware Bluetooth protocols.
Keywords :
Bluetooth; access protocols; ad hoc networks; digital simulation; picocellular radio; probability; radiofrequency interference; 2.4 GHz; Bluetooth MAC protocol; ISM band; default radio interface; frequency band; handheld electronic devices; inter-piconet interference; interference aware Bluetooth protocols; interference modeling; piconet MAC performance; piconets; scatternet; short-range ad hoc wireless networks; signal capture model; signal reception; simulation; successful packet transmission probability; throughput; unlicensed industrial-scientific-medical band; Ad hoc networks; Bluetooth; Frequency; Interference; Mathematical model; Media Access Protocol; Personal area networks; Scattering; Throughput; Wireless networks;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2003.819026
Filename :
1244801
Link To Document :
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