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Design of a novel ultra-high frequency radio-frequency identification reader antenna for near-field communications using oppositely directed currents

机译:用于反向电流的近场通信的新型超高频射频识别阅读器天线的设计

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摘要

The authors propose a novel ultra-high frequency (UHF) near-field reader antenna that produces a strong and uniform magnetic near field over a broad region to detect radio-frequency identification (RFID) tags attached to various target objects consistently. The concept of two closely spaced oppositely directed currents (ODCs) is used to obtain a strong magnetic near field, and a symmetrical inverted-L structure fed by a coaxial feed with a parasitic patch is employed as the antenna body to realise the ODCs without any additional feed network. The design parameters were optimised using the Pareto genetic algorithm (GA) in conjunction with the FEKO EM simulator. The optimised antenna had an average magnetic near field of 220 dBA/m in the reading region (30 × 30 × 10 cm3), which is suitable for commercial smart-shelf applications. Finally, we examined the effect on our proposed antenna of placing objects in the reading region. The results show that our antenna is appropriate for smart shelves with item-level tagging.
机译:作者提出了一种新颖的超高频(UHF)近场阅读器天线,该天线可在宽广的区域上产生强大而均匀的磁场近场,以检测附着在各种目标物体上的射频识别(RFID)标签。使用两个紧密间隔的反向电流(ODC)的概念来获得强磁场近场,并且采用由带有寄生贴片的同轴馈源馈电的对称倒L结构作为天线主体,以实现无任何ODC额外的Feed网络。使用帕累托遗传算法(GA)结合FEKO EM仿真器对设计参数进行了优化。经过优化的天线在读取区域(30×30×10 cm3)内具有220 dBA / m的平均近磁场,适用于商业智能货架应用。最后,我们研究了将物体放置在阅读区域对我们建议的天线的影响。结果表明,我们的天线适用于带有商品级标签的智能货架。

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