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首页> 外文期刊>Wireless Communications, IEEE Transactions on >Frequency-Domain Turbo Equalization with Soft Successive Interference Cancellation for Single Carrier MIMO Underwater Acoustic Communications
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Frequency-Domain Turbo Equalization with Soft Successive Interference Cancellation for Single Carrier MIMO Underwater Acoustic Communications

机译:单载波MIMO水下声通信中具有软连续干扰消除的频域Turbo均衡

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摘要

This paper proposes a low-complexity frequency-domain turbo equalizer (FDTE) combined with phase rotation compensation and soft successive interference cancellation (SSIC) for single carrier multiple-input multiple-output (MIMO) underwater acoustic (UWA) communications. Different from existing time-domain turbo equalizers in MIMO UWA systems, the proposed receiver implements low-complexity turbo equalization in the frequency domain to combat severe inter-symbol interference (ISI) and employs a layered structure to cope with unbalanced MIMO channels. Soft, rather than hard, successive interference cancellation (SIC) is employed in the layered iterative turbo detection to alleviate co-channel interference (CCI), and phase compensation is utilized within the layered FDTE to mitigate phase rotation. The proposed scheme was evaluated by the SPACE08 experiment conducted in a shallow area of the Atlantic Ocean in October 2008. The 2-transducer 12-hydrophone MIMO system communicated with quaternary phase shift keying (QPSK) and 8-phase shift keying (8PSK) modulation schemes over 200 m and 1000 m ranges, where the proposed FDTE-SSIC scheme achieved low bit error rates (BERs) with only a few iterations. Simulation results also demonstrated that the proposed FDTE-SSIC receiver provided lower BER than one-layer FDTE receivers with comparable complexity.
机译:本文提出了一种低复杂度的频域涡轮均衡器(FDTE),结合了相位旋转补偿和软连续干扰消除(SSIC),用于单载波多输入多输出(MIMO)水声(UWA)通信。与MIMO UWA系统中现有的时域Turbo均衡器不同,拟议中的接收机在频域中实现低复杂度Turbo均衡以抵抗严重的符号间干扰(ISI),并采用分层结构来应对不平衡的MIMO信道。在分层迭代涡轮检测中采用软而不是硬的连续干扰消除(SIC)来缓解同频干扰(CCI),并且在分层FDTE中利用相位补偿来减轻相位旋转。该提议的方案通过2008年10月在大西洋浅海地区进行的SPACE08实验进行了评估。2传感器12水听器MIMO系统与四相相移键控(QPSK)和8相移键控(8PSK)调制通信在超过200 m和1000 m范围内的各种方案中,提出的FDTE-SSIC方案仅需几次迭代即可实现低误码率(BER)。仿真结果还表明,所提出的FDTE-SSIC接收器比具有相同复杂度的单层FDTE接收器提供了更低的BER。

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