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Delay-based ordered detection for layered space-time signals of underwater acoustic communications

机译:基于延迟的排序检测水下声学通信的分层时空信号

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摘要

The long relative propagation delays between the underwater acoustic channels poses a challenge to the detection of the multiple-input multiple-output signals but also gives a chance for a better space-time signal processing scheme. This paper proposes a detection ordering scheme for the layered space-time detection with the successive interference cancellation (SIC) algorithm, where the channel relative delays leading asynchronous arrival of the layered signals are utilized to arrange the detection order that is quite important for a SIC detection. This delay-based ordering is demonstrated as an optimal one for minimizing the detection error probability via the geometrically based model of the SIC detection. The complexity and calculation of the ordering procedure are significantly decreased by means of the delay estimations of the sub-channels. An iterative layered spacetime detector combining the delay-base ordered SIC algorithm with the iterative block decision feedback equalizer is employed, where the iterative equalizer is utilized for the cancellation of the multipath interference and the asynchronous arrival interference. Numerical results show that up to 4 dB performance gain obtained by the delay-based ordered SIC detection for a 2×2 MIMO system.
机译:水下声道之间的长相对传播延迟对多输入多输出信号的检测构成了挑战,而且还给出了更好的时空信号处理方案的机会。本文提出了具有连续干扰消除(SIC)算法的分层时空检测的检测排序方案,其中利用了分层信号的前沿到达的信道相对延迟来安排对SIC非常重要的检测顺序检测。基于延迟的排序被证明是最佳的排序,用于通过基于几何基于的SIC检测模型最小化检测误差概率。通过子信道的延迟估计,顺序过程的复杂性和计算显着降低。采用与迭代块判定反馈均衡器的延迟基础排序的SIC算法组合的迭代分层间隔检测器,其中迭代均衡器用于取消多径干扰和异步到达干扰。数值结果表明,由2×2 MIMO系统的基于延迟的有序SIC检测获得了高达4 dB性能增益。

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