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Design and COMSOL simulation of koch snowflake dipole fractal antennas

机译:科赫雪花偶极子形分形天线的设计和COMSOL仿真

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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 varying, 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:本文重点介绍了用于RFID(射频识别)的Koch雪花半波偶极天线的设计和仿真。分形天线被设计为紧凑的,以及在UHF(超高频)和微波频率下的多频段使用。 Koch雪花的前三个迭代是通过COMSOL设计和仿真的。每个天线都是为UHF频段设计的,并且在本文中对第二个频段进行了分析。每个天线被模拟为铜线,宽度不断变化,厚度减小了1毫米。提出了分形天线物理长度的减小和多频带能力。每次迭代后,天线的物理长度会减小,而高度会增加,并且回波损耗至少为10 dB。与以前的迭代相比,通过使用更少的物理长度,每个天线将更加紧凑。同样,为了建模在860-960 MHz和2.4-2.48 GHz谐振的天线,常见的RFID范围,本文介绍了包含分形天线的基板。

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