DocumentCode :
2094401
Title :
Frequency band selection and channel modeling for WNSN applications using simplenano
Author :
Javed, I.T. ; Naqvi, Ijaz Haider
Author_Institution :
Syed Babar Ali Sch. of Sci. & Eng., Dept. of Electr. Eng., LUMS, Lahore, Pakistan
fYear :
2013
fDate :
9-13 June 2013
Firstpage :
5732
Lastpage :
5736
Abstract :
With the discovery of Graphene, different nano-scale components can be integrated to form a nano-sensor capable of transmitting in the tera-hertz range (0.1-10 THz). The transmitted signal gets attenuated when it passes through different types of molecules. Thus, channel models for wireless nano sensor networks (WNSN) are environment specific. For most of the applications, the nano-sensors are placed inside the human body, which may interact with other nano-sensors (inside the body) and other non nano-scale devices (outside the body). We present SimpleNano, a simple and novel channel model for WNSN applications in the tera-hertz range. SimpleNano is an approximation to log-distance path loss model along with the random (log-normally distributed) attenuation caused by the molecular absorption. For certain band windows within terahertz range SimpleNano experiences low molecular noise. These different band windows have been compared for a novel capacity performance metric i.e. spatial capacity per Hertz and the results prove that the proposed band windows achieve better throughput than the ones with larger molecular noise.
Keywords :
nanosensors; wireless sensor networks; SimpleNano; WNSN applications; band windows; capacity performance metric; channel modeling; frequency 0.1 THz to 10 THz; frequency band selection; graphene; log-distance path loss model; low molecular noise; molecular absorption; nanoscale components; nonnanoscale devices; random attenuation; wireless nanosensor networks; Absorption; Atmospheric modeling; Attenuation; Bandwidth; Biological system modeling; Nanoscale devices; Wireless communication; Channel modeling; Graphene; Wireless nano sensor networks; channel capacity;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications (ICC), 2013 IEEE International Conference on
Conference_Location :
Budapest
ISSN :
1550-3607
Type :
conf
DOI :
10.1109/ICC.2013.6655509
Filename :
6655509
Link To Document :
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