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Design and COMSOL Simulation of Koch Snowflake Dipole Fractal Antennas

机译:Koch雪花偶极分形天线设计和COMSOL模拟

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This paper highlights the design and simulation of Koch snowflake half-wave dipole antennas for RFID (radio frequency identification) use. The fractal antennas are designed to be compact as well as multi-band use at UHF (ultra high frequency) and microwave frequencies. The first three iterations of the Koch snowflake were designed and simulated through COMSOL. Each antenna was designed for the UHF band and an analysis of the second band is given in the paper. Each antenna was simulated as a copper wires with vary ing, decreasing widths and 1 mm thickness. The reduction of the physical length and the multi-band capabilities of the fractal antennas are presented. The antenna's physical length decreases while the height increases after every iteration and has a return loss of at least 10 dB. Every antenna will be more compact by using less physical length than its previous iteration. Also, in order to model an antenna that has resonance at 860-960 MHz and 2.4-2.48 GHz, common RFID ranges, the inclusion of a substrate with the fractal antennas are presented in this paper.
机译:本文突出了Koch雪花半波偶极天线的设计和仿真,用于RFID(射频识别)使用。分形天线设计成紧凑以及UHF(超高频)和微波频率的多频段使用。通过COMSOL设计和模拟了Koch雪花的前三个迭代。每个天线都是针对UHF带设计的,并在纸上给出了对第二带的分析。每个天线被模拟为具有变化,宽度和1mm厚度的铜线。提出了分形天线的物理长度的减少和多带能力。天线的物理长度减小,而在每次迭代后高度增加并且具有至少10 dB的回波损耗。通过使用较少的物理长度比其先前的迭代更少,每个天线都将更加紧凑。而且,为了模拟具有860-960MHz和2.4-2.48GHz的共振的天线,普通的RFID范围,本文介绍了与分形天线的基板。

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