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波浪水槽中毫米波雷达跨介质通信实验研究

曾玉明 张坤 乐南燕 宋春毅 徐志伟

水下无人系统学报2024,Vol.32Issue(4):628-636,643,10.
水下无人系统学报2024,Vol.32Issue(4):628-636,643,10.DOI:10.11993/j.issn.2096-3920.2024-0109

波浪水槽中毫米波雷达跨介质通信实验研究

Experimental Study of Trans-Medium Communication of Millimeter-Wave Radar in Wave Tank

曾玉明 1张坤 1乐南燕 1宋春毅 2徐志伟2

作者信息

  • 1. 东海实验室海空电磁通感装备技术研究所,浙江舟山,316021
  • 2. 东海实验室海空电磁通感装备技术研究所,浙江舟山,316021||浙江大学海洋电子与智能系统研究所,浙江舟山,316021
  • 折叠

摘要

Abstract

Wireless cross-medium communication for underwater equipment may be possible by using millimeter-wave radar to detect the micro-wave vibration on the water surface excited by sound waves of underwater equipment.Studying the effect of water surface waves is of great value for achieving trans-medium communication based on micro-wave vibration detection by millimeter-wave radar.Therefore,experiments were carried out on the trans-medium communication of binary phase-shift keying(BPSK)and binary frequency-shift keying(BFSK)modulation signals in a wave tank.The influence of different water surface wave vibrations on trans-medium communication was tested and analyzed,and the communication performance based on spatial diversity technology was evaluated.The experimental results show that moderate water surface wave vibrations have the least impact on the trans-medium communication performance of millimeter-wave radar,and the spatial diversity technology based on multi-channel data merging can improve trans-medium communication performance on wavy water surfaces.The research results can provide a reference for practical applications of trans-medium communication technology based on micro-wave vibration detection by millimeter-wave radar on wavy water surfaces.

关键词

毫米波雷达/跨介质/无线通信/波浪水槽/微幅波

Key words

millimeter-wave radar/trans-medium/wireless communication/wave tank/micro-wave vibration

分类

武器工业

引用本文复制引用

曾玉明,张坤,乐南燕,宋春毅,徐志伟..波浪水槽中毫米波雷达跨介质通信实验研究[J].水下无人系统学报,2024,32(4):628-636,643,10.

基金项目

国家自然科学基金青年项目(62001426) (62001426)

浙江省自然科学基金探索项目(LQ21F010004) (LQ21F010004)

东海青年人才启航基金项目资助(L24QH001). (L24QH001)

水下无人系统学报

OACSTPCD

2096-3920

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