IEEE Journal on Selected Areas in Communications · 2003 · 107 citations · 21 references
EngineeringWireless LanAnalytical Performance EvaluationIeee802.11b CoexistenceChannel ModelingCoexistence DistanceInternet Of ThingsIeee 802.11BComputer EngineeringCoexistence DomainCooperative DiversityMobile ComputingFading ChannelWireless AccessSignal ProcessingEdge ComputingHeterogeneous NetworkChannel ModelFading Channels
In this paper, the issue of Bluetooth and IEEE802.11b coexistence in a heterogeneous environment is addressed by means of an integrated analytical approach. The methodology proposed carefully takes both physical (i.e., thermal noise, propagation, interference, modulation formats, and coding techniques) and medium access control (frequency hopping, packet structures, traffic loads) aspects into account. This model can be easily implemented when developing network simulators, thus avoiding the need of extensive bit level Monte Carlo simulations at the physical level. The mean packet error probability is evaluated as a function of the relative distance between the two systems for different conditions (e.g., propagation, packet type, traffic loading, etc). In particular, how the presence or absence of line-of-sight propagation significantly affects the coexistence distance is emphasized. Furthermore, for a fixed quality-of-service level we derive the coexistence domain of the two considered systems in terms of relative distance.
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David G. Messerschmitt · IEEE Transactions on Acoustics Speech and Signal Processing · 1984 · 183 citations
Wi-Fi (802.11b) and Bluetooth: enabling coexistence
Jim Lansford, Adrian Stephens, R. Nevo · IEEE Network · 2001 · 174 citations
Ieee 802.11B, Enabling Coexistence, Media Access Control +11
Interference of bluetooth and IEEE 802.11
Nada Golmie, R.E. Van Dyck, A. Soltanian · 2001 · 119 citations
WLAN and WPAN coexistence in UL band
I. Howitt · IEEE Transactions on Vehicular Technology · 2001 · 113 citations
Radio network performance of Bluetooth
S. Zurbes, W. Stahl, Kirsten Matheus et al. · 2002 · 103 citations
Radio Network Performance, Engineering, Data Communication +11