DocumentCode :
1423115
Title :
Performance evaluation of a narrowband power line communication for smart grid with noise reduction technique
Author :
Korki, Mehdi ; Hosseinzadeh, Nasser ; Moazzeni, Taleb
Author_Institution :
Fac. of Eng. & Ind. Sci., Swinburne Univ. of Technol., Melbourne, VIC, Australia
Volume :
57
Issue :
4
fYear :
2011
fDate :
11/1/2011 12:00:00 AM
Firstpage :
1598
Lastpage :
1606
Abstract :
Performance of the narrowband power line communication (PLC) is significantly degraded by the impulsive noise with very large amplitudes and short durations. In practical applications, the simple memoryless nonlinearity techniques (Clipping, Blanking, and Clipping/Blanking) are often used in order to mitigate the effect of the impulsive noise. In this paper, we propose an optimal Clipping/Blanking technique for impulsive noise reduction in narrowband (9-490 kHz) PLC system. This optimal technique is based on the minimum bit error rate (BER) search. To this end, we have derived the transfer function of a typical low voltage (LV) PLC network using the common bottom-up approach and scattering matrix method. Our simulation results, in terms of BER versus signal to noise ratio (SNR), show that the proposed technique slightly improves the BER performance of the narrowband PLC system for smart grid applications and two-way communication between smart meters and utilities1.
Keywords :
S-matrix theory; automatic meter reading; carrier transmission on power lines; error statistics; impulse noise; interference suppression; memoryless systems; performance evaluation; smart power grids; transfer functions; BER; SNR; blanking technique; clipping technique; common bottom-up approach; frequency 9 kHz to 490 kHz; impulsive noise mitigation; low voltage PLC network; memoryless nonlinearity technique; minimum bit error rate search; narrowband PLC system; narrowband power line communication; noise reduction technique; performance evaluation; scattering matrix method; signal-to-noise ratio; smart grid; smart meters; transfer function; two-way communication; Bit error rate; Blanking; Narrowband; Noise; OFDM; Scattering; Smart grids; Clipping/Blanking; Power line communication; noise reduction technique.; smart grid;
fLanguage :
English
Journal_Title :
Consumer Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0098-3063
Type :
jour
DOI :
10.1109/TCE.2011.6131131
Filename :
6131131
Link To Document :
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