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Maximum likelihood sequence detection using a pilot tone

机译:使用导频音的最大似然序列检测

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This paper derives, analyzes, and simulates a maximum likelihood (ML) sequence detector (MLSD) for a linearly modulated signal transmitted with a pilot tone (PT-MLSD). The transmitted signal is distorted by a time-varying frequency-selective Rayleigh fading channel and corrupted by additive Gaussian noise. The received signal is unsynchronized in that there are residual carrier frequency, carrier phase, and symbol timing offsets. The PT-MLSD treats the channel as a stochastic process, and so symbol sequences are distinguished by their autocovariances. Coherent communication is possible even in overspread channels. As the sequences' autocovariances explicitly account for the channel's time variation, the PT-MLSD's bit error rate (BER) floor is normally lower than the BER floor suffered by receivers that estimate the channel impulse response conventionally. Both the data-bearing signal and pilot tone are used together for synchronization, equalization, and detection. The pilot tone is only needed to remove the constellation's phase ambiguity and provide a stable amplitude reference for QAM constellations. It is not needed for estimating the channel impulse response. The pilot tone does not require a spectral null for its insertion, and it does not significantly degrade the peak-to-average or maximum-to-minimum power ratios. Thus, many of the disadvantages of other pilot tone systems are avoided, as there is no bandwidth expansion, and linear amplification is not made appreciably more difficult.
机译:本文针对以导频音(PT-MLSD)传输的线性调制信号推导,分析和模拟最大似然(ML)序列检测器(MLSD)。随时间变化的频率选择性瑞利衰落信道使发送的信号失真,并因加性高斯噪声而损坏。接收到的信号是不同步的,因为存在残留的载波频率,载波相位和符号定时偏移。 PT-MLSD将信道视为随机过程,因此符号序列通过其自协方差来区分。即使在扩展信道中,也可以进行连贯的通信。由于序列的自协方差明确地说明了信道的时间变化,因此PT-MLSD的误比特率(BER)底限通常低于常规上估计信道冲激响应的接收机所遭受的BER底限。数据承载信号和导频音都一起用于同步,均衡和检测。仅需要导频音即可消除星座图的相位模糊性,并为QAM星座图提供稳定的幅度参考。不需要估计信道冲激响应。导频音不需要为其插入插入频谱,也不会显着降低峰均功率比或最大最小功率比。因此,避免了其他导频音调系统的许多缺点,因为没有带宽扩展,并且线性放大没有明显增加。

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