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On SNR Estimation Techniques for Turbo Decoding Over Uncorrelated Rayleigh Fading Channels With Unknown Fading Parameters

机译:具有未知衰落参数的不相关瑞利衰落信道上Turbo解码的SNR估计技术

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摘要

Three non-data-aided signal-to-noise ratio (SNR) estimator techniques are derived and compared for turbo decoding, in conjunction with block-coded binary-phase-shift-keying (BPSK) signals received over fully interleaved (i.e., uncorrelated) Rayleigh fading channels. These estimators, which do not require knowledge at the receiver of the channel SNR nor the power of fading amplitude, are optimized in terms of minimizing the estimation error by choosing an appropriate curve fit model and comparing their estimation errors, as well as their turbo decoding bit-error-rate (BER) performance. Turbo decoding performance evaluation results have demonstrated that the two SNR estimators, which use the ratios of the second moment to the square of the mean absolute value and the fourth moment to the fourth power of the mean absolute value of the received signals, respectively, result in comparable BER performance to the case of perfect SNR knowledge at the receiver. Furthermore, they outperform the third SNR estimator, which makes use of the ratio of the square of the second moment to the fourth moment, particularly in applications with relatively short code blocks.
机译:结合在完全交织的(即不相关的)接收的块编码二进制相移键控(BPSK)信号,推导了三种非数据辅助的信噪比(SNR)估计器技术并进行了涡轮解码比较)瑞利衰落信道。这些估计器不需要接收器的信道SNR知识或衰落幅度的功率,通过选择合适的曲线拟合模型并比较其估计误差以及Turbo解码,可将估计误差最小化,从而对这些估计器进行了优化。误码率(BER)性能。 Turbo解码性能评估结果表明,使用两个SNR估计器,分别使用接收信号的平均绝对值的平方和的第二矩与平方的比值进行计算。 BER性能可与接收器的完美SNR知识相比。此外,它们的性能优于第三SNR估计器,后者利用了第二矩与第四矩的平方之比,特别是在代码块相对较短的应用中。

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