© 2014 IEEE. Power-line communication (PLC) is considered as the backbone of smart grid. Impulsive noise (IN) over such channels, however, remains the main factor responsible for degrading communication signals. A simple method to mitigate IN over PLC channels is to precede the receiver with a nonlinear preprocessor to blank and/or clip the incoming signal when it exceeds a certain threshold. Applying a combination of blanking and clipping in a hybrid fashion was shown to provide the best performance. The hybrid scheme is characterized by two thresholds Τ1 and T2 (Τ1 = α.T2), where a is a scaling factor. Previous studies assume a fixed value for the scaling factor and found that optimizing the threshold T2 is the key to enhance performance....
Blanking non-linearity is broadly used in impulsive noise communication environments due to its effi...
© 2015 Elsevier GmbH. All rights reserved. Signal blanking is a simple and efficient method commonly...
In this paper, we propose an optimal Clipping/Blanking nonlinearity technique for impulsive noise re...
© 2015 IEEE. Impulsive noise (IN) over power-lines can significantly corrupt communication signals. ...
Powerline communication technology is a promising communication platform for smart grid and has nowa...
In future smart cities, smart grid technologies which are usually enabled by Powerline Communication...
Communication signals over power-line channels can be affected greatly by impulsive noise (IN). The ...
High amplitude impulsive noise (IN) occurrence over power line channels severely degrades the perfor...
Generally, the probability density function (PDF) of orthogonal frequency division multiplexing (OFD...
Performance of the narrowband power line communication (PLC) is significantly degraded by the impuls...
Performance of the narrowband power line communication (PLC) is significantly degraded by the impuls...
Signal blanking is a common technique for mitigating impulsive noise (IN) in power-line communicatio...
Impulsive noise (IN) is a major component that degrades signal integrity in power line communication...
Impulsive noise (IN) is a major component that degrades signal integrity in power line communication...
Blanking non-linearity is broadly used in impulsive noise communication environments due to its effi...
© 2015 Elsevier GmbH. All rights reserved. Signal blanking is a simple and efficient method commonly...
In this paper, we propose an optimal Clipping/Blanking nonlinearity technique for impulsive noise re...
© 2015 IEEE. Impulsive noise (IN) over power-lines can significantly corrupt communication signals. ...
Powerline communication technology is a promising communication platform for smart grid and has nowa...
In future smart cities, smart grid technologies which are usually enabled by Powerline Communication...
Communication signals over power-line channels can be affected greatly by impulsive noise (IN). The ...
High amplitude impulsive noise (IN) occurrence over power line channels severely degrades the perfor...
Generally, the probability density function (PDF) of orthogonal frequency division multiplexing (OFD...
Performance of the narrowband power line communication (PLC) is significantly degraded by the impuls...
Performance of the narrowband power line communication (PLC) is significantly degraded by the impuls...
Signal blanking is a common technique for mitigating impulsive noise (IN) in power-line communicatio...
Impulsive noise (IN) is a major component that degrades signal integrity in power line communication...
Impulsive noise (IN) is a major component that degrades signal integrity in power line communication...
Blanking non-linearity is broadly used in impulsive noise communication environments due to its effi...
© 2015 Elsevier GmbH. All rights reserved. Signal blanking is a simple and efficient method commonly...
In this paper, we propose an optimal Clipping/Blanking nonlinearity technique for impulsive noise re...