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首页> 外文期刊>IEEE Journal of Oceanic Engineering >Frequency-Domain Decision Feedback Equalization for Single-Carrier Transmissions in Fast Time-Varying Underwater Acoustic Channels
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Frequency-Domain Decision Feedback Equalization for Single-Carrier Transmissions in Fast Time-Varying Underwater Acoustic Channels

机译:快速时变水下声道中的单载波传输的频域判定反馈均衡

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Frequency-domain equalization (FDE) is a computationally efficient method to recover underwater acoustic single-carrier transmissions in a multipath environment. The FDE receivers often operate in a block-by-block manner, assuming that the channel is time invariant during a block duration. This assumption implies that traditional block-based FDE receivers experience performance degradation in fast time-varying channel conditions, since the interfrequency interference (IFI) is often not considered. Here, we focus on the IFI cancelation (IFIC) in single-carrier transmissions. The IFI formulations are developed for a blockwise FDE receiver, where the time reversal (TR) processing is incorporated to alleviate the interblock interference. Based on the formulations, the IFI is estimated by the time-varying impulse responses, which are obtained from an adaptive basis expansion model. A soft two-step IFIC strategy is then employed to address the IFI. In the first step, the main IFI is removed by the time-varying TR processing and explicit IFI cancelation. The residual IFI is suppressed by the frequency-domain decision feedback equalization (FD-DFE) in the second step. To further enhance the communication performance, we develop a soft-symbol-based iterative receiver, referred to as IFIC-FD-DFE. The impulse responses, explicit IFI, and residual IFI are updated in an iterative fashion, based on the soft symbol estimates. The proposed receiver has been tested using the at-sea measurements collected at the Gulf of Mexico in August 2017. Communication packets at four ranges at the carrier frequency of 160 kHz with a symbol rate of 32 kHz have been decoded. The effectiveness of the IFIC-FD-DFE receiver has been demonstrated via comparisons with several FDE schemes in the current literature.
机译:频域均衡(FDE)是在多径环境中恢复水下声学单载波传输的计算有效方法。 FDE接收机通常以逐个块方式操作,假设信道是在块持续时间期间的时间不变。这种假设意味着基于块的FDE接收器在快速时变信道条件下经历性能下降,因为通常不考虑杂交干扰(IFI)。在这里,我们专注于单载波传输中的IFI取消(IFIC)。为群体FDE接收器开发IFI配方,其中结合了时间反转(TR)处理来缓解互连干扰。基于制剂,通过时变的脉冲响应估计IFI,其从自适应基础扩展模型获得。然后采用柔软的两步IFIC策略来解决IFI。在第一步中,主IFI通过时变TR处理和显式IFI取消删除。通过第二步骤中的频率域判定反馈均衡(FD-DFE)抑制了残差IFI。为了进一步提高通信性能,我们开发了一种基于软符号的迭代接收器,称为IFIC-FD-DFE。基于软符号估计,以迭代方式更新脉冲响应,显式IFI和残差IFI。拟议的接收器已经在2017年8月在墨西哥湾收集的海上测量进行了测试。已经解码了32 kHz符号率的160kHz的载波频率下的四个范围的通信包。已经通过与当前文献中的几种FDE方案进行比较来证明IFIC-FD-DFE接收器的有效性。

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