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Microwave signal rectification using artificial composite materials composed of diode-loaded electrically small dipole antennas

机译:使用人造复合材料对微波信号进行整流,该复合材料由二极管负载的电偶极子天线组成

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The electromagnetic properties of composite materials composed of dipole or loop antennas (also called molecules) loaded with different linear passive electronic circuits are summarized. These molecules are extended to those molecules whose loads contain some basic nonlinear elements. Several examples are discussed. The simplest nonlinear load is the clamping circuit: a diode and a resistor are connected in series to an electrically small dipole antenna. This is generalized to a more complicated molecule based on a diode bridge. Numerical results generated with a finite-difference time-domain (FDTD) simulator demonstrate how an incident narrow-bandwidth pulse interacts with these materials and can be transformed into a baseband, rectified signal, or a signal containing selected harmonics of the fundamental frequency. Potential applications of these artificial material-based signal convertors include target identification and signal modulation.
机译:总结了由偶极或环形天线(也称为分子)组成的复合材料的电磁特性,这些复合材料装有不同的线性无源电子电路。这些分子扩展到其载荷包含一些基本非线性元素的分子。讨论了几个例子。最简单的非线性负载是钳位电路:一个二极管和一个电阻串联到一个小的电偶极子天线上。这被概括为基于二极管桥的更复杂的分子。有限差分时域(FDTD)模拟器产生的数值结果表明,入射窄带脉冲如何与这些材料相互作用,并可以转换为基带,整流信号或包含基频选定谐波的信号。这些基于人工材料的信号转换器的潜在应用包括目标识别和信号调制。

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