The IEEE 1901 powerline standard can be deployed using orthogonal frequency division multiplexing (OFDM) since it is robust over impulsive channels. However, the powerline channel picks up impulsive interference that the conventional OFDM driver cannot combat. Since the probability density function (PDF) of OFDM amplitudes follow the Rayleigh distribution, it becomes difficult to correctly predict the existence of impulsive noise (IN) in powerline systems. In this study, we use companding transforms to convert the PDF of the conventional OFDM system to a uniform distribution which avails the identification and mitigation of IN. Results show significant improvement in the output signal-to-noise ratio (SNR) when nonlinear optimization search ...
Impulsive noise (IN) is a major component that degrades signal integrity in power line communication...
© 2015 IEEE. Signal blanking is a simple and efficient method to reduce the effect of impulsive nois...
© 2014 IEEE. In power-line channels, impulsive noise (IN) is commonly reduced using a blanking techn...
The IEEE 1901 powerline standard can be deployed using orthogonal frequency division multiplexing (O...
Generally, the probability density function (PDF) of orthogonal frequency division multiplexing (OFD...
In future smart cities, smart grid technologies which are usually enabled by Powerline Communication...
Powerline communication technology is a promising communication platform for smart grid and has nowa...
A very efficient method to mitigate impulsive noise (IN) over powerline channels is to precede the O...
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...
Impulsive noise (IN) is a major component that degrades signal integrity in power line communication...
Signal blanking is a common technique for mitigating impulsive noise (IN) in power-line communicatio...
Impulsive noise (IN) is one of the most dominant factors responsible for degrading the performance o...
Impulsive noise (IN) is a major component that degrades signal integrity in power line communication...
© 2015 IEEE. Signal blanking is a simple and efficient method to reduce the effect of impulsive nois...
© 2014 IEEE. In power-line channels, impulsive noise (IN) is commonly reduced using a blanking techn...
The IEEE 1901 powerline standard can be deployed using orthogonal frequency division multiplexing (O...
Generally, the probability density function (PDF) of orthogonal frequency division multiplexing (OFD...
In future smart cities, smart grid technologies which are usually enabled by Powerline Communication...
Powerline communication technology is a promising communication platform for smart grid and has nowa...
A very efficient method to mitigate impulsive noise (IN) over powerline channels is to precede the O...
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...
Impulsive noise (IN) is a major component that degrades signal integrity in power line communication...
Signal blanking is a common technique for mitigating impulsive noise (IN) in power-line communicatio...
Impulsive noise (IN) is one of the most dominant factors responsible for degrading the performance o...
Impulsive noise (IN) is a major component that degrades signal integrity in power line communication...
© 2015 IEEE. Signal blanking is a simple and efficient method to reduce the effect of impulsive nois...
© 2014 IEEE. In power-line channels, impulsive noise (IN) is commonly reduced using a blanking techn...