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首页> 外文期刊>Oceanic Engineering, IEEE Journal of >Adaptive Channel Estimation and Data Detection for Underwater Acoustic MIMO–OFDM Systems
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Adaptive Channel Estimation and Data Detection for Underwater Acoustic MIMO–OFDM Systems

机译:水下声学MIMO–OFDM系统的自适应信道估计和数据检测

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摘要

In this paper, frequency and time correlation of the underwater channel are exploited to obtain a low-complexity adaptive channel estimation algorithm for multiple-input–multiple-output (MIMO) spatial multiplexing of independent data streams. The algorithm is coupled with nonuniform Doppler prediction and tracking, which enable decision-directed operation and reduces the overhead. Performance is demonstrated on experimental data recorded in several shallow-water channels over distances on the order of 1 km. Nearly error-free performance is observed for two and four transmitters with BCH(64,10) encoded quadrature phase-shift keying (QPSK) signals. With a 24-kHz bandwidth, overall data rates of up to 23 kb/s after coding were achieved with 2048 carriers. Good results have also been observed in two other experiments with varying MIMO–OFDM (orthogonal frequency-division multiplexing) configurations.
机译:本文利用水下通道的频率和时间相关性,获得了一种用于独立数据流的多输入多输出(MIMO)空间复用的低复杂度自适应信道估计算法。该算法与非均匀多普勒预测和跟踪相结合,可实现决策操作并减少开销。在数条浅水河道中记录的实验数据中,在1 km左右的距离上证明了其性能。对于使用BCH(64,10)编码的正交相移键控(QPSK)信号的两个和四个发射器,观察到几乎没有错误的性能。带宽为24 kHz时,使用2048个载波可实现编码后高达23 kb / s的总数据速率。在另外两个使用不同MIMO–OFDM(正交频分复用)配置的实验中也观察到了良好的结果。

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