基于磁感应的磁棒天线水下通信研究
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作者单位:

a. 昆明理工大学 信息工程与自动化学院

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中图分类号:

TN929.3

基金项目:

云南省“兴滇英才支持计划”项目(KKXY202203006)经费支持


Underwater Magnetic Induction Communication Based on Magnetic Rod Antenna
Author:
Affiliation:

1.a. Faculty of Information Engineering and Automation,Kun Ming University of Science and Techonology,650500;2.KunMing,China

Fund Project:

Yunnan Xingdian Talents Support Plan

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    摘要:

    传统水下磁感应通信因使用单向线圈而面临方向敏感、通信距离短及可靠性不足等问题。为解决这些问题,研究结合了磁感应理论,采用磁棒天线作为收发装置,并分析了正交全向磁棒天线。仿真结果显示,在相同条件下,磁棒天线通信效果优于单向线圈,且测试了正交全向磁棒天线角度对感应电压的影响。为验证结论,搭建了实验平台进行实验,结果与仿真一致,证明磁棒天线收发能力强,对小信号接收效果好,能有效提升通信距离。正交全向磁棒天线兼具磁棒天线的优良通信能力并弥补了方向敏感的缺陷,且非同心的设计降低了制作难度,理论分析符合预期,为水下磁感应通信提供了新思路,展现了其在未来水下通信中的潜力。

    Abstract:

    Traditional underwater magnetic induction communication faced issues such as directional sensitivity, short communication distances, and insufficient reliability due to the use of unidirectional coils. To address these problems, the study combined magnetic induction theory and utilized magnetic rod antennas as transmitting and receiving devices, analyzing orthogonal omnidirectional magnetic rod antennas. Simulation results showed that, under the same conditions, magnetic rod antennas outperformed unidirectional coils in communication effectiveness, and tested the impact of angular placement of orthogonal omnidirectional magnetic rod antennas on induced voltage. To validate the conclusions, an experimental platform was set up, and the results were consistent with the simulations, proving that magnetic rod antennas have strong transmission and reception capabilities, better small signal reception, and can effectively improve communication distances. The orthogonal omnidirectional magnetic rod antenna combines the excellent communication capabilities of magnetic rod antennas while mitigating directional sensitivity issues. Additionally, the non-coincident design reduces fabrication complexity. Theoretical analysis met expectations, providing new insights for underwater magnetic induction communication and demonstrating its potential for future underwater communications.

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  • 收稿日期:2024-11-08
  • 最后修改日期:2025-03-27
  • 录用日期:2025-03-27
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