论文标题
超低频率近场通信的磁机械发射机
Magneto-Mechanical Transmitters for Ultra-Low Frequency Near-field Communication
论文作者
论文摘要
由于低信号衰减和高穿透深度,在3 kHz以下的超低频率(ULF)范围内的电磁信号非常适合水下和地下无线通信。但是,设计使用传统方法,例如使用线圈或偶极天线的ULF发射器设计ULF发射器是一项挑战。最近的作品考虑了磁机械替代方案,其中使用永久磁铁的运动生成ULF磁场,因为它们可以使极其紧凑的ULF发射器能够以低的能量消耗且适合于人类验收的应用。在这里,我们探讨了谐振磁机电发射机(MMT)的设计和操作原理,该发射机(MMT)在跨越10 hz的频率上运行,最高为1 kHz。我们在实验上使用单旋转和多连杆架构进行了两种类型的MMT设计。我们使用点偶极近似和磁静态模拟研究了MMT的非线性电力动力学。我们进一步探索了控制操作频率的技术,并显示了每秒10位的振幅调制。
Electromagnetic signals in the ultra-low frequency (ULF) range below 3 kHz are well suited for underwater and underground wireless communication thanks to low signal attenuation and high penetration depth. However, it is challenging to design ULF transmitters that are simultaneously compact and energy efficient using traditional approaches, e.g., using coils or dipole antennas. Recent works have considered magneto-mechanical alternatives, in which ULF magnetic fields are generated using the motion of permanent magnets, since they enable extremely compact ULF transmitters that can operate with low energy consumption and are suitable for human-portable applications. Here we explore the design and operating principles of resonant magneto-mechanical transmitters (MMT) that operate over frequencies spanning a few 10's of Hz up to 1 kHz. We experimentally demonstrate two types of MMT designs using both single-rotor and multi-rotor architectures. We study the nonlinear electro-mechanical dynamics of MMTs using point dipole approximation and magneto-static simulations. We further experimentally explore techniques to control the operation frequency and demonstrate amplitude modulation up to 10 bits-per-second.