Low frequency mechanical antennas: Electrically short transmitters from mechanically-actuated dielectrics

J. Bickford, Ronald S. McNabb, P. Ward, Daniel K. Freeman, M. Weinberg
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引用次数: 31

Abstract

Antennas that operate in the low-frequency (LF) band and below are useful for a number of applications. However, the long wavelengths result in very low efficiency for antennas that could be made portable. This has motivated the need for novel approaches for electrically short antenna design. Here, we present the concept of an electromagnetic transmitter that operates by mechanically moving bound static charge. The resulting motion induces electromagnetic fields that are similar to a short dipole antenna. However, the voltage, current, and resistance of a conventional antenna are replaced by force, velocity, and damping in a mechanical system. The mechanical system offers very high efficiency at low frequencies where impedance matching naturally occurs and mechanical structures have very low losses. We present a basic proof-of-concept demonstration by rotating a charged electret material up to 167Hz and measuring the resulting time-varying magnetic field. This work is intended to lay the foundation for future tests involving the implementation of efficient, small form-factor, mechanically-actuated antennas.
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低频机械天线:由机械驱动的电介质制成的电短发射机
在低频(LF)及以下频段工作的天线对许多应用都很有用。然而,长波长导致天线的效率非常低,这可能是便携式的。这激发了对电短天线设计新方法的需求。在这里,我们提出了一种电磁发射机的概念,它通过机械地移动束缚静电荷来工作。由此产生的运动产生类似于短偶极天线的电磁场。然而,在机械系统中,传统天线的电压、电流和电阻被力、速度和阻尼所取代。在阻抗匹配自然发生的低频下,机械系统提供了非常高的效率,并且机械结构具有非常低的损耗。我们提出了一个基本的概念验证演示,通过旋转带电驻极体材料高达167Hz并测量由此产生的时变磁场。这项工作旨在为涉及实施高效、小尺寸、机械驱动天线的未来测试奠定基础。
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