Effect of pulse noise jamming and phase noise on a coherent RAKE receiver with maximum-likelihood detection and convolutional coding

K. Kowalske, R. C. Robertson
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Abstract

The effect of pulse noise jamming and phase noise on a coherent RAKE receiver with convolutional coding is analyzed. The effect of additive white Gaussian noise (AWGN) is also included in the analysis. The maximum-likelihood RAKE receiver for the combination of pulse noise and AWGN is derived. Pulse jamming usually has a significant effect when soft decision decoding is used, however, we show that the maximum-likelihood RAKE receiver effectively mitigates the effects of the pulse noise jammer. Phase noise causes an irreducible error floor when soft decision decoding is used. The maximum-likelihood RAKE receiver with hard decision decoding reduces the effect of pulse noise jamming and can provide performance below the irreducible error floor obtained with soft decision decoding.
脉冲噪声干扰和相位噪声对最大似然检测卷积编码相干RAKE接收机的影响
分析了脉冲噪声干扰和相位噪声对卷积编码相干RAKE接收机的影响。加性高斯白噪声(AWGN)的影响也被纳入分析。推导了脉冲噪声与AWGN相结合的最大似然RAKE接收机。当采用软判决译码时,脉冲干扰通常会产生显著的影响,然而,我们表明,最大似然RAKE接收机有效地减轻了脉冲噪声干扰的影响。采用软判决译码时,相位噪声会造成不可减小的误差层。硬判决译码的最大似然RAKE接收机减少了脉冲噪声干扰的影响,并能提供低于软判决译码所获得的不可约误差层的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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