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An investigation of the effects of impulsive noise and channel distortion in narrow band power line communication

机译:脉冲噪声和信道失真在窄带电力线通信中的影响研究

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One of the major impediments in a Power Line Communication (PLC) channel is the unpredictable impulsive noise (IN) which originates from varied sources. Its effects in the presence of channel distortion causes bit flip error among other problems, in narrow band power line communication (NB-PLC) and thus the system will be prone to error in its command or monitoring purposes. In this paper, the effects of IN superimposed on the channel distortion in the transmission of unmodulated and different digitally modulated data signal are studied. The PLC channels transmitted signals (i.e. data and power) and IN were modeled. For each modulation scheme, the bit error rate (BER) was estimated at the receiving end and the performances were compared based on the estimated BER. The results of these comparison showed that the transmission of the modulated signal had lower BER when compared with the transmission of the unmodulated data signal. Among the modulated signals, the phase shift keying (PSK) out performs the other modulation type like amplitude shift keying (ASK) and frequency shift keying (FSK). This result agrees with literature.
机译:电力线通信(PLC)信道中的一个主要障碍是源自各种源的不可预测的脉冲噪声(IN)。在窄带电力线通信(NB-PLC)中,其在信道失真存在下的效果导致位翻转误差,因此系统将在其命令或监视目的中容易出现系统。在本文中,研究了在未调制和不同数字调制数据信号传输中叠加在频道失真上的效果。 PLC信道发送信号(即数据和功率)和IN被建模。对于每个调制方案,在接收端估计误码率(BER),基于估计的BER进行比较性能。与未调制数据信号的传输相比,这些比较的结果表明,调制信号的传输具有较低的BER。在调制信号中,相移键控(PSK)输出执行其他调制类型,如幅度移位键控(ASK)和频移键控(FSK)。这结果同意文学。

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