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Experiment results of iterative block-based decision feedback equalizer with spatial diversity in underwater acoustic channels

机译:水声信道中具有空间分集的基于块的迭代决策反馈均衡器的实验结果

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The use of multiple hydrophones at the receiver brings several advantages to an underwater communication system, such as improved signal-to-noise (SNR) ratio and spatial diversity gain. Many existing array combining techniques have implicitly assumed that the channel undergoes flat fading, with either perfect time-domain equalization (TDE) or OFDM-based (Orthogonal Frequency Division Multiplexing) modulation. Unfortunately, direct applications of these methods to underwater acoustic (UWA) channels are severely limited by the long delay spread and the low dynamic range of hydrophones. In this paper, a receiver structure based on the recently developed iterative block (IB) decision-feedback equalization (DFE) with single-carrier frequency domain equalization (SC-FDE) was applied to the real underwater acoustic data from CAPEx09. We investigated the performance improvement of this nonlinear equalizer with respect to the regular linear MMSE equalizer. Our results show that the IB-DFE are more immune to the noise contaminations compared with MMSE equalizer.
机译:在接收器处使用多个水听器会给水下通信系统带来多个优势,例如改善的信噪比(SNR)和空间分集增益。许多现有的阵列组合技术已隐含地假设信道会经历平坦衰落,并具有完美的时域均衡(TDE)或基于OFDM的(正交频分复用)调制。不幸的是,这些方法在水下声学(UWA)通道上的直接应用受到长时延扩展和水听器低动态范围的严重限制。本文将基于最近开发的具有单载波频域均衡(SC-FDE)的迭代块(IB)决策反馈均衡(DFE)的接收器结构应用于CAPEx09的真实水下声波数据。我们研究了这种非线性均衡器相对于常规线性MMSE均衡器的性能改进。我们的结果表明,与MMSE均衡器相比,IB-DFE对噪声污染的抵抗力更大。

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