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中国物理学会期刊

小型低频发射天线的研究进展

CSTR: 32037.14.aps.69.20200792

Research progress of small low-frequency transmitting antenna

CSTR: 32037.14.aps.69.20200792
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  • 机械天线是通过电荷或磁偶极子的机械运动产生电磁场辐射的新型低频发射天线. 新型的辐射原理使其能够打破传统天线波长对物理尺寸的约束, 从而以较小的尺寸实现低频通信, 为对潜通信、透地通信等场景提供了颠覆性的解决方案. 近年来机械天线吸引了国内外众多研究团队的关注, 是低频通信领域的研究热点. 本综述简要回顾了传统的低频发射天线发展情况, 详细介绍了机械天线不同实现方案的研究进展, 对比了各方案的辐射性能与优缺点, 并针对机械天线信号调制方法进行了探讨, 最后展望了机械天线的未来研究方向.

     

    Low-frequency electromagnetic waves have the characteristics of long propagation distance, strong resistance to electromagnetic pulse interference, and slow attenuation in seawater and other media. However, conventional low-frequency transmitting antennas have problems such as bulkiness, high power consumption, and low efficiency, which are not conducive to the performance of low-frequency electromagnetic waves. The mechanical antenna is a new type of low-frequency transmitting antenna that generates time-varying electromagnetic field radiation through the mechanical movement of electric charges or magnetic dipoles. The new radiation principle enables mechanical antennas to break the constraints on the physical size of electromagnetic waves in the traditional antenna field, thereby achieving low-frequency communication with a smaller size and higher efficiency, providing a subversive solution to scenarios such as submarine communication and through-the-earth communication. In recent years, mechanical antennas have attracted much attention and become a hot research topic in the field of low-frequency communication. In this paper, we briefly review the development history, development direction, and existing problems of traditional large-scale land-based low-frequency transmit antennas and persistent mobile low-frequency transmit antennas; we mention the details of the working principles and recent research progress of different mechanical antenna implementations including electret, permanent magnet and piezoelectric mechanical antennas; we compare and analyze the radiation performance, innovations, advantages and disadvantages of each specific implementation scheme; and we also discuss the characteristics of the existing frequency modulation, amplitude modulation, polarization modulation and other signal modulation methods of mechanical antennas and the application schemes of several signal modulation methods of different types of mechanical antennas; finally, we prospect the research direction of mechanical antennas in the next stage. At present, the feasibility of the mechanical antenna scheme has been verified theoretically and experimentally, but it is limited by the antenna volume, power consumption, driving device and other factors, and the radiation intensity of the mechanical antenna is limited. We believe that the research in the field of mechanical antennas in the next stage will focus on the design of antennas for achieving longer communication distances at the sacrifice of certain small and light weight indicators, and innovative signal loading and modulation methods to improve communication rates will also be worth paying attention to in the field of mechanical antennas.

     

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