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Time- and Frequency-Domain Impulsive Noise Spreader for OFDM systems

机译:OFDM系统的时间和频率域脉冲噪声扩展器

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In this work, a new technique for mitigating the impulsive noise impact on the orthogonal frequency division multiplexing (OFDM) system is proposed, and its performance is compared with a previously published technique (referred to as time-domain interleaving (TDI) technique). In the TDI technique, the samples contaminated by impulsive noise are spread in time-domain over N OFDM symbols by using an interleaver after the inverse fast Fourier transform (IFFT) process. Accordingly, the effect of the impulsive noise burst will be averaged over N OFDM symbols, which reduces the impact on the bit error rate (BER) considerably. However, to achieve the same goal, the proposed system is using an additional orthogonal transform in form of an IFFT at the output of the interleaver. In general, the two techniques have shown a superior improvement in BER performance compared to that of the standard OFDM system, which suffers from error floors at high values of signal to noise ratio (SNR). However, for quadrature phase shift keying (QPSK) modulation with low signal to impulsive noise ratio (SIR), the proposed technique outperforms the TDI technique for different impulsive noise distributions. For high modulation order 16 and 64 quadrature amplitude modulation (QAM) in severe impulsive noise channels, the proposed technique demonstrates more robustness than the TDI, which suffers from error floors for the considered values of SIR and impulsive noise distributions.
机译:在这项工作中,提出了一种用于减轻对正交频分复用(OFDM)系统的冲动噪声影响的新技术,并将其性能与先前发布的技术进行比较(称为时域交织(TDI)技术)。在TDI技术中,通过在逆快速傅立叶变换(IFFT)处理之后,通过使用交织器在n OFDM符号上污染的样品在时间域中分布。因此,脉冲噪声突发的效果将在N OFDM符号上平均,这显着降低了对误码率(BER)的影响。然而,为了实现相同的目标,所提出的系统正在使用交织器的输出的IFFT形式的额外正交变换。通常,两种技术已经显示出与标准OFDM系统相比的BER性能的卓越改善,这遭受了高值的误差地板到噪声比(SNR)。然而,对于具有低信号的正交相移键控(QPSK)调制与脉冲噪声比(SIR),所提出的技术优于不同脉冲噪声分布的TDI技术。对于严重脉冲噪声通道中的高调制阶16和64正交幅度调制(QAM),所提出的技术展示了比TDI更具鲁棒性,这遭受了所考虑的SIR和脉冲噪声分布的误差地板。

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