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1.厦门大学信息与通信工程系,福建 厦门 361005
2.中国舰船研究院,北京 100192
[ "余骁(2000- ),男,厦门大学信息与通信工程系硕士生,主要研究方向为宽带无线通信。" ]
[ "徐位凯(1976- ),男,博士,厦门大学信息与通信工程系副教授,主要研究方向为宽带无线通信与水声通信。" ]
[ "孙海信(1977- ),男,博士,厦门大学信息与通信工程系教授,主要研究方向为水声通信与信号处理。" ]
[ "刘祺(1985- ),女,博士,中国舰船研究院技术专家,主要研究方向为智能信号处理与智能计算。" ]
收稿日期:2024-04-16,
修回日期:2024-07-04,
纸质出版日期:2024-09-20
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余骁,徐位凯,孙海信等.MM-LoRa-Mod:一种应用于水声通信的非相干LoRa调制方案[J].电信科学,2024,40(09):13-27.
YU Xiao,XU Weikai,SUN Haixin,et al.MM-LoRa-Mod: A non-coherent LoRa modulation scheme for underwater acoustic communications[J].Telecommunications Science,2024,40(09):13-27.
余骁,徐位凯,孙海信等.MM-LoRa-Mod:一种应用于水声通信的非相干LoRa调制方案[J].电信科学,2024,40(09):13-27. DOI: 10.11959/j.issn.1000-0801.2024194.
YU Xiao,XU Weikai,SUN Haixin,et al.MM-LoRa-Mod: A non-coherent LoRa modulation scheme for underwater acoustic communications[J].Telecommunications Science,2024,40(09):13-27. DOI: 10.11959/j.issn.1000-0801.2024194.
LoRa(long-range)是一种新兴的低功耗广域网技术。面对频率选择性衰落多径信道等挑战,现有LoRa方案存在数据速率低、系统复杂度高等问题。针对以上问题,提出一种基于多模的LoRa(MM-LoRa-Mod)调制方案,该方案通过多路复用线性调频信号的频移来传输信息,显著提高了数据速率。此外,针对复杂水声通信场景,提出一种低复杂度的MM-LoRa-Mod非相干检测算法。通过评估MM-LoRa-Mod在多径信道、Watermark仿真平台以及浅海水声信道下的误码率性能,所提方案展现了优异的抗多径衰落和抗多普勒频移性能,表明MM-LoRa-Mod在水声通信场景具备高可靠性。
LoRa (long-range) is an emerging low-power wide-area network technology. Facing challenges such as frequency selective fading multipath channels
existing LoRa schemes are subjected to issues like low data rates and high system complexity. To address these issues
a multi-mode LoRa (MM-LoRa-Mod) based modulation scheme was proposed. The frequency shifts of the multiple multiplexed chirp signals for information transmission were utilized in this scheme
thereby significantly enhancing data rates. Additionally
for underwater acoustic communication scenarios
a low-complexity non-coherent detection algorithm for MM-LoRa-Mod was introduced. Through the evaluation of MM-LoRa-Mod’s bit error rate performance in multipath channels
Watermark underwater acoustic channels
and shallow water acoustic channels
excellent anti-multipath fading and anti-Doppler frequency shift capabilities were demonstrated
indicating the high reliability of MM-LoRa-Mod in underwater acoustic communication scenarios.
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