用于全息成像和整流天线的宽带分形天线

K. J. Bunch, D. McMakin, D. Sheen
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引用次数: 0

摘要

在太平洋西北国家实验室,宽带天线阵列已经成功地用于重建微波和毫米波频率的三维图像。该技术的应用包括门户监控、穿墙成像和武器探测。分形天线由于其自相似的特性(也就是说,它们的几何形状在不同的尺度上被复制)而具有宽带特性。它们还具有在紧凑的结构中提供良好特性的优势。讨论了分形天线在全息成像中的应用。将给出仿真结果。整流天线是一种特殊类型的天线,其中接收到的信号驱动非线性结,并以谐波频率或解调频率重传。应用包括用独特的响应天线标记和跟踪物体。考虑分形整流天线是有意义的,因为分形天线的自相似性往往使它们在多次主共振时具有相似的共振行为。因此,分形天线可以适用于信号以谐波频率辐射的应用。我们将在讨论模拟时考虑到这个应用程序。
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Wideband fractal antennas for holographic imaging and rectenna applications
At Pacific Northwest National Laboratory, wideband antenna arrays have been successfully used to reconstruct three-dimensional images at microwave and millimeter-wave frequencies. Applications of this technology have included portal monitoring, through-wall imaging, and weapons detection. Fractal antennas have been shown to have wideband characteristics due to their self-similar nature (that is, their geometry is replicated at different scales). They further have advantages in providing good characteristics in a compact configuration. We discuss the application of fractal antennas for holographic imaging. Simulation results will be presented. Rectennas are a specific class of antennas in which a received signal drives a nonlinear junction and is retransmitted at either a harmonic frequency or a demodulated frequency. Applications include tagging and tracking objects with a uniquely-responding antenna. It is of interest to consider fractal rectenna because the self-similarity of fractal antennas tends to make them have similar resonance behavior at multiples of the primary resonance. Thus, fractal antennas can be suited for applications in which a signal is reradiated at a harmonic frequency. Simulations will be discussed with this application in mind.
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