寄生元件双环放置ESPAR天线

M. Rahman, H. Ryu
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引用次数: 4

摘要

本文提出了一种用于超高频(UHF)射频识别(RFID)通信系统的电子可操纵寄生阵列辐射(ESPAR)天线,以克服干扰。采用ESPAR天线,可以在不使用移相器的情况下实现所需的波束转向。在这种天线中,波束驱动元件被紧密间隔的双环寄生元件包围。因此,我们提出了双环ESPAR天线架构,以实现RFID标签和阅读器之间长距离通信的最小干扰和最佳信噪比。所设计的ESPAR天线在增益、辐射方向图和反射系数方面均表现出良好的性能。ESPAR天线的增益最大值为7.63 dBi,与之前发布的曾设计的ISM频段2.40 GHz天线相比,该天线能够成功地处理远距离通信各自方向的干扰。该设计可以应用于许多个人通信,如ECG(心电图)监测系统,天气跟踪,以及许多其他无线传感器网络(WSN)应用。
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ESPAR Antenna with Double Ring Placement of Parasitic Elements
In this paper, we like to propose an Electronically Steerable Parasitic Array Radiator (ESPAR) antenna for Ultra-High Frequency (UHF) Radio Frequency Identification (RFID) communication system to overcome the interference. The desired beam steering could be achieved without the use of phase shifters using ESPAR antenna. In this antenna, the beam driving element is surrounded by closely spaced double ring parasitic elements. So, we have proposed the architecture of double ring ESPAR antenna for minimum interference, and for optimum SNR (Signal to Noise Ratio) value over long distance communication between the RFID tag and reader. The suggested ESPAR antenna shows very good performance based on gain, radiation pattern, and reflection coefficient. The maximum value of gain of the proposed ESPAR antenna is obtained as 7.63 dBi which will successfully handle the interference at the respective directions to be communicated over long distance as compared to the previously published once designed antennas at the ISM band of 2.40 GHz frequency. This proposed design could be applied in numerous personal communications such as ECG (electrocardiogram) monitoring system, weather tracking, and in many others Wireless Sensor Network (WSN) applications.
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