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Designing Artificial Magnetic Conductor at 2.45 GHz for Metallic Detection in RFID Tag Application

机译:在RFID标签应用中设计用于金属检测的2.45 GHz人工磁导体

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In this paper, three types of AMC with different shape and design is discussed. The single unit cell Halfring AMC designed in this paper had increased the bandwidth up to 9.46%. Parametric studies were conducted for those three AMCs to investigate the effect of varying the parameters of each design. The values of gain, directivity and return loss for all AMCs is discussed and compared. From the simulated result, when the dipole is attached on Perfect Electric Conductor, PEC the performance of antenna will drop severely. The new Halfring AMC designed in this paper had overcome the problem of metallic object detection in RFID tag application. The simulated result shows that the Halfring AMC at half-lambda size had increased the performance of dipole antenna with return loss = -22.60 dB, gain = 7.58 dB and directivity of 8.15 dBi.
机译:本文讨论了三种形状和设计不同的AMC。本文设计的单晶电池Halfring AMC将带宽提高到9.46%。对这三个AMC进行了参数研究,以研究改变每个设计参数的效果。讨论并比较了所有AMC的增益,方向性和回波损耗的值。从仿真结果可以看出,当偶极子连接在Perfect Electric Conductor,PEC上时,天线的性能将严重下降。本文设计的新型Halfring AMC克服了RFID标签应用中金属物体检测的问题。仿真结果表明,在半λ尺寸下的Halfring AMC提高了偶极天线的性能,回波损耗= -22.60 dB,增益= 7.58 dB,方向性为8.15 dBi。

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