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Turbo Detection for MIMO–OFDM Underwater Acoustic Communications

机译:MIMO–OFDM水下声通信的Turbo检测

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摘要

An experimental investigation on turbo detection for multiple-input multiple-output (MIMO) orthogonal frequency division multiplexing (OFDM) underwater acoustic communications, is presented in this paper. In our detection scheme, the linear symbol estimation benefits from a hybrid soft interference cancelation and a reliability-based detection ordering enabled by the a priori information at the equalizer input. The proposed MIMO–OFDM detector is tested by field trial data collected in the SPACE08 and the ACOMM10 undersea acoustic communication experiments, where convolutional code was adopted in SPACE08 and binary low-density parity-check (LDPC) code was used in ACOMM10. Experimental results show that for both sets of trial data, turbo detection achieves much better performance than the conventional non-iterative detection. Moreover, the results provide guidance on the selection of system parameters including the subcarrier number, the iteration numbers for both the turbo equalization and the LDPC decoding, for achieving a good complexity-performance tradeoff.
机译:本文对多输入多输出(OFDM)正交频分复用(OFDM)水声通信中的turbo检测进行了实验研究。在我们的检测方案中,线性符号估计得益于混合软干扰消除和均衡器输入处的先验信息实现的基于可靠性的检测排序。提议的MIMO–OFDM检测器通过SPACE08和ACOMM10海底声通信实验中收集的现场试验数据进行测试,其中SPACE08采用卷积码,而ACOMM10中使用二进制低密度奇偶校验(LDPC)码。实验结果表明,对于两组试验数据,turbo检测都比常规的非迭代检测具有更好的性能。此外,结果为选择系统参数提供了指导,包括子载波号,turbo均衡和LDPC解码的迭代数,以实现良好的复杂度-性能折衷。

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