远距离水声通信的多频DPSK调制

Jianguo Huang, Yong-En Chen, Qunfei Zhang, Xiaohong Shen, F. Wang
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引用次数: 4

摘要

长距离浅水信道具有信道衰落严重、有效信噪比低的特点。在传统的水声通信系统中,采用非相干MFSK调制或基于空间分集和自适应均衡的相干调制。非相干调制虽然对衰落信道具有鲁棒性,但不能有效地解决高信令率和高可靠性之间的冲突需求。大型接收器阵列可能被限制用于某些尺寸有限的接收器平台。提出了一种适用于浅水信道的远程水声通信的多频NDPSK (MFSK-NDPSK)调制方法。该方法是MFSK和NDPSK调制的有效结合。信号采用多载波频率的NDPSK调制,相邻符号的载波频率位于不同的子频带。信息通过信号的频率和相位传输。给出了理论分析和仿真结果,并进行了湖泊试验。结果表明,与单载波调制相比,MFSK-NDPSK调制可以在相同通信范围内提高数据速率,或者在保持相同数据速率的情况下提高通信范围,因为可以提高输入信噪比,从而提高通信系统的性能,降低码间干扰,提高通信系统的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-frequency DPSK modulation for long-range underwater acoustic communication
Long-range shallow water channels are characterized by severe channel fading and low available signal to noise ratio (SNR). In classical underwater acoustic communication systems for above channels, incoherent MFSK modulation, or coherent modulation based on spatial diversity and adaptive equalizations are employed. Although being robustness to fading channels, the incoherent modulation cannot solve efficiently the conflict demands between the high signaling rate and reliability. Large receiver arrays may be restricted to be used for some size limited receiver platforms. A novel multi-frequency NDPSK (MFSK-NDPSK) modulation approach for long-range underwater acoustic communications is presented in this paper which is well suited in shallow water channels. The proposed approach is an efficient combination of MFSK and NDPSK modulation. Signals are NDPSK modulated with multi-carrier frequencies, and the carrier frequencies of adjacent symbols are located in different subbands. Information is transmitted by both frequencies and phases of signals. The theoretical analysis and simulation results are given, and also the experiments in lake were conducted. The results demonstrate that compared with single-carrier modulation, the MFSK-NDPSK modulation can increase data rate in same communication range, or increase the communication range while keeping the same data rate due to input SNR can be increased to improve the performance of decreasing inter-symbol interference and increasing reliability of communication systems.
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