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Adaptive turbo equalization for underwater acoustic communication

机译:水下声学通信的自适应涡轮均衡

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In this paper a multiband transceiver designed for underwater channels is presented. Multi-branch filtering at the receiver is used to leverage the diversity offered by a multi-scale multi-lag scenario. The multi-branch bank of filters is constructed by estimating scale and delay coefficients through an initial preamble composed by a maximum length sequence. An intelligent design of the pulse shaper at the transmitter and the receiver permits the reduction of the complexity of the equalization algorithm: the effective channel can be seen as a simple time-invariant finite impulse response filter possibly affected by a carrier frequency offset. Adaptive turbo equalization is chosen to deal with the high time-variability which characterizes many underwater channels and also to avoid the burden of estimating all parameters of the different paths. A phase locked loop and recursive least squares algorithm is implemented on each branch and for each subband which sweep the received sequence several times to refine decoding; in order to enhance the receiver performance the updating of the equalizer taps is obtained by making use of soft information provided as feedbacks from the turbo decoder. The proposed transceiver is tested on a realistic channel obtained by channel soundings performed in the Lyme Bay area, South England. Also comparisons with other existing turbo equalizer schemes are performed.
机译:在本文中的多频带收发机设计用于水下通道被呈现。多分支在接收机滤波被用来利用由多尺度多滞后方案所提供的多样性。过滤器的多分支银行是通过由最大长度序列组成的初始前导估计规模和延迟系数构成。发射机处的脉冲整形器和接收器的智能设计允许均衡算法的复杂性的降低:该有效信道可看作是一个简单的时间不变的有限脉冲响应可能影响一个载波频率偏移滤波器。自适应Turbo均衡被选择为处理高时变性表征许多水下通道,并且还避免估计所述不同的路径的所有参数的负担。锁相环和递推最小二乘算法在每个分支上实现,并且对每个子带,其扫接收序列几次以改进解码的装置;为了提高接收器性能的均衡器抽头的更新通过利用从turbo解码器的反馈提供的软信息而获得。所提出的收发机上由莱姆湾区,南英国执行的信道探测获得的真实的信道进行测试。也可以与其它现有的涡轮均衡器方案的比较被执行。

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