DocumentCode :
70819
Title :
Difference sets-based compressive sensing as denoising method for narrow-band power line communications
Author :
Matanza, Javier ; Alexandres, Sadot ; Rodriguez-Morcillo, Carlos
Author_Institution :
ICAI Sch. of Eng., Electron. & Control Dept., Comillas Pontifical Univ., Madrid, Spain
Volume :
7
Issue :
15
fYear :
2013
fDate :
Oct. 15 2013
Firstpage :
1580
Lastpage :
1586
Abstract :
The present work analyses and compares two of the most popular specifications for data transmission over power line networks: PoweRline Intelligent Metering Evolution (PRIME) and G3-power line communication (G3-PLC). A simulation model has been built using Matlab software in order to evaluate their respective performances with special focus on impulsive noise environments. For this purpose, Middleton´s Class-A noise model was used in conjunction with measured noise parameters reported in the literature for the narrow-band spectrum. The performance is measured in terms of bit error rate versus signal to noise ratio. Simulation results show how G3-PLC outperforms PRIME when the channel is impaired by such type of noise. Moreover, although the use of compressive sensing to cancel impulsive noise in communications has already been proposed in other studies, this paper details a modification based on Partial Fourier Matrix indexing according to difference sets. Results from simulations report an almost complete cancellation of the impulsive noise effects. An advantage of this technique is that no redundancy is added to the message; therefore no decrement in the transmission rate is experienced.
Keywords :
carrier transmission on power lines; compressed sensing; impulse noise; signal denoising; G3-PLC; G3-power line communication; Matlab workspace; PRIME; bit error rate; class-A noise model; denoising method; difference sets-based compressive sensing; impulsive noise channels; narrow-band power line communications; narrow-band spectrum; partial Fourier matrix;
fLanguage :
English
Journal_Title :
Communications, IET
Publisher :
iet
ISSN :
1751-8628
Type :
jour
DOI :
10.1049/iet-com.2013.0166
Filename :
6648781
Link To Document :
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