Title :
Joint peak amplitude and impulsive noise clippings in OFDM-based power line communications
Author :
Juwono, Filbert H. ; Qinghua Guo ; Defeng Huang ; Kit Po Wong
Author_Institution :
Sch. of Electr., Univ. of Western Australia, Perth, WA, Australia
Abstract :
Impulsive noise is one of the main channel impairments in orthogonal frequency division multiplexing (OFDM)-based power line communications (PLC). Clipping nonlinearites such as conventional clipping, blanking, joint blanking/clipping, and deep clipping have been proposed to mitigate the impulsive noise. However, OFDM systems result in high peak amplitude after inverse discrete Fourier transform (IDFT) at the transmitter, which leads to large peak-to-average power ratio (PAPR). High peak amplitude can be falsely clipped by the impulsive noise clipper at the receiver leading to poor system performance. In this paper we propose a joint peak amplitude clipping and impulsive noise clipping nonlinearities to improve the bit error rate (BER) performance.
Keywords :
OFDM modulation; carrier transmission on power lines; discrete Fourier transforms; error statistics; impulse noise; inverse transforms; radio transmitters; BER performance; IDFT; OFDM systems; OFDM-based power line communications; PAPR; PLC; bit error rate; blanking; channel impairments; clipping nonlinearites; deep clipping; impulsive noise clipper; impulsive noise clipping nonlinearities; inverse discrete Fourier transform; orthogonal frequency division multiplexing; peak amplitude clipping; peak-to-average power ratio; transmitter; Bit error rate; Blanking; Peak to average power ratio; Receivers; Signal to noise ratio; OFDM; PLC; impulsive noise; impulsive noise clipping nonlinearities; peak amplitude clipping;
Conference_Titel :
Communications (APCC), 2013 19th Asia-Pacific Conference on
Conference_Location :
Denpasar
Print_ISBN :
978-1-4673-6048-7
DOI :
10.1109/APCC.2013.6766012