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Time-Frequency Modulation Diversity to Combat Periodic Impulsive Noise in Narrowband Powerline Communications

机译:时频调制分集与窄带电力线通信中的周期性脉冲噪声作斗争

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摘要

Non-Gaussian noise/interference severely limits communication performance of narrowband powerline communication (PLC) systems. Such noise/interference is dominated by periodic impulsive noise whose statistics varies with the AC cycle. The periodic impulsive noise statistics deviates significantly from that of additive white Gaussian noise, thereby causing dramatic performance degradation in conventional narrowband PLC systems. In this paper, we propose a robust transmission scheme and corresponding receiver methods to combat periodic impulsive noise in OFDM-based narrowband PLC. Towards that end, we propose (1) a time-frequency modulation diversity scheme at the transmitter and a diversity demodulator at the receiver to improve communication reliability without decreasing data rates; and (2) a semi-online algorithm that exploits the sparsity of the noise in the frequency domain to estimate the noise power spectrum for reliable decoding at the diversity demodulator. In the simulations, compared with a narrowband PLC system using Reed-Solomon and convolutional coding, whole-packet interleaving and DBPSK/BPSK modulation, our proposed transceiver methods achieve up to 8 dB gains in with convolutional coding and a smaller-sized interleaver/deinterleaver.
机译:非高斯噪声/干扰严重限制了窄带电力线通信(PLC)系统的通信性能。这种噪声/干扰受周期性脉冲噪声的支配,其周期性随AC周期而变化。周期性脉冲噪声统计数据与加性高斯白噪声的统计数据明显不同,从而导致常规窄带PLC系统的性能急剧下降。在本文中,我们提出了一种鲁棒的传输方案和相应的接收器方法来应对基于OFDM的窄带PLC中的周期性脉冲噪声。为此,我们提出(1)在发射机处采用时频调制分集方案,在接收机处采用分集解调器,以在不降低数据速率的情况下提高通信可靠性。 (2)一种半在线算法,该算法利用频域中的稀疏性来估计噪声功率谱,以便在分集解调器处进行可靠的解码。在仿真中,与使用Reed-Solomon和卷积编码,整个数据包交织以及DBPSK / BPSK调制的窄带PLC系统相比,我们提出的收发器方法通过卷积编码和较小尺寸的交织器/解交织器可实现高达8 dB的增益。

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