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Impulsive Noise Error Correction in 16-OFDM for Narrowband Power Line Communication

机译:窄带电力线通信16奥多姆冲动噪声误差校正

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Orthogonal frequency division multiplexing (OFDM) with a small number of subcarriers (≤ 64) is shown to be promising in the narrowband power line communication (PLC) when the peak-to-average power ratio is reduced to the CENELEC standards. Although many authors studied the performance of the OFDM systems under the impulsive noise, their considerations are mostly restricted to OFDM systems with a large number of subcarriers. In that case, discrete Fourier transform (DFT) spreads the impulsive noise in such a way that its distribution in the frequency domain can be approximated as Gaussian. If the number of subcarriers is small, these methods can be hardly used. We describe an iterative algorithm for correcting the impulsive noise errors for the OFDM transmission with a small number of subcarriers. Simulation results for a 16-OFDM-QPSK system show that the influence of impulsive noise can be essentially reduced.
机译:具有少量子载波(≤64)的正交频分复用(OFDM)被示出在窄带电力线通信(PLC)中有望,当峰值平均功率比降低到CENELEC标准时。虽然许多作者在脉冲噪声下研究了OFDM系统的性能,但它们的考虑因素主要限于具有大量子载波的OFDM系统。在这种情况下,离散的傅里叶变换(DFT)以这样的方式扩散了脉冲噪声,使得其在频域中的分布可以近似为高斯。如果子载波的数量很小,则可以几乎不使用这些方法。我们描述了一种迭代算法,用于用少量子载波校正OFDM传输的脉冲噪声误差。 16 ofdm-QPSK系统的仿真结果表明,脉冲噪声的影响本质基本上可以减少。

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