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Evolutionary design of miniaturized meander-line antennas for RFID applications

机译:RFID应用的小型曲折线天线的演进设计

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Radio frequency identification (RFID) of objects or people has become very popular in many service industries, distribution logistics, manufacturing companies and goods flow systems. In these applications data are contactless transferred to a local querying system (reader) from a remote transponder (tag) including an antenna and a microchip transmitter. In this paper we discuss versions of the standard meander line antenna (MLA) which are obtained by a proper shaping of the conductor in order to best utilize the wire current and improve the antenna gain while keeping the size small. To explore efficiently a large number of MLA configurations, an evolutionary approach has been considered. It is based on a genetic algorithm optimization (GA) and the method of moments (MoM) to design the best length for each meander line segment. Example are presented for a MLA tag tuned at 869 MHz (one of the European RFID frequencies) with size smaller than (4 /spl times/ 3.5 cm/sup 2/).
机译:物体或人员的射频识别(RFID)已在许多服务行业,分销物流,制造公司和货物流系统中变得非常流行。在这些应用中,数据通过包括天线和微芯片发射器的远程应答器(标签)以非接触方式传输到本地查询系统(读取器)。在本文中,我们讨论了标准曲折线天线(MLA)的版本,这些版本是通过对导体进行适当的整形而获得的,以便最佳利用线电流并提高天线增益,同时保持尺寸较小。为了有效地探索大量的MLA配置,已经考虑了一种进化方法。它基于遗传算法优化(GA)和矩量方法(MoM)为每个曲折线段设计最佳长度。举例说明了在869 MHz(欧洲RFID频率之一)上调谐的MLA标签,其尺寸小于(4 / spl次/ 3.5 cm / sup 2 /)。

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