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Adaptive WHT Aided QAM for Fading Channels Subjected to Impulsive Noise

机译:遭受脉冲噪声的衰落信道的自适应WHT辅助QAM

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摘要

The Bit Error Rate (BER) expressions of Walsh-Hadamard Transform (WHT) aided Quadrature Amplitude Modulation (QAM) transmitted in impulsive noise environments are derived. It is found that there is a crossover point between the conventional and WHT-aided schemes' BER curves, above which WHT is beneficial in terms of the corresponding BER performance. The exact crossover SNR is analysed and its approximate closed-form expression is derived for a QPSK scheme based on the Chernoff bound. An adaptive WHT scheme is proposed for QAM systems, where the transmitter activates the WHT only when the instantaneous SNR at the receiver is higher than the crossover SNR. The theoretical BER of our adaptive WHT scheme is derived for QAM systems operating over Nakagami-m fading channels. It is found that our adaptive WHT scheme is effective in terms of mitigating the detrimental effects of impulsive noise over the entire SNR range.
机译:推导了在脉冲噪声环境中传输的Walsh-Hadamard变换(WHT)辅助正交幅度调制(QAM)的误码率(BER)表达式。发现在传统方案和WHT辅助方案的BER曲线之间存在一个交叉点,在该交叉点之上,WHT就相应的BER性能而言是有益的。分析了精确的交叉SNR,并基于Chernoff边界为QPSK方案推导了其近似的封闭形式表达式。针对QAM系统提出了一种自适应WHT方案,其中,仅当接收器处的瞬时SNR高于交叉SNR时,发送器才激活WHT。我们的自适应WHT方案的理论BER是针对在Nakagami-m衰落信道上运行的QAM系统得出的。发现我们的自适应WHT方案在减轻整个SNR范围内的脉冲噪声的有害影响方面是有效的。

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