A Proposed Compact Broadband Meander Antenna for RFID Applications

A. Al-Ka'bi
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Abstract

Radio Frequency Identification technology aims at identifying and tracking objects labeled with tags. To achieve this goal, the need for antennas with certain characteristics and specifications becomes of great importance. In this research work, a proposed compact broadband meander antenna for Radio Frequency Identification Applications is presented. In the proposed model of the antenna, the inductive strips are bent to generate capacitive effects between them. To achieve an acceptable impedance matching at a frequency of 876MHz between the antenna and the receiving microchip of model “NXP UCODE G2XL”, shorting lines created along the antenna structure together with a T-shaped matching circuit are used. This proposed design of the antenna results in a compact size antenna (75×25×1.6mm3) with a resonance frequency that lies in theEuropean band of 867MHz, and it has an input impedance of Z = 16 - j156 Ω. The antenna is made from copper strip with a thickness of 35 μm and fabricated on an FR4 epoxy substrate with a thickness of 1.6 mm. This paper presents the proposed antenna simulation results performed in various situations and conditions. The antenna performance is investigated in terms of various aspects such as gain, radiation pattern, return loss, and input impedance.
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一种用于RFID应用的紧凑型宽带弯曲天线
射频识别技术旨在识别和跟踪带有标签的物体。为了实现这一目标,对具有一定特性和规格的天线的需求变得非常重要。在本研究中,提出了一种用于射频识别应用的紧凑型宽带弯曲天线。在所提出的天线模型中,电感带被弯曲以在它们之间产生电容效应。为了实现天线与型号为“NXP UCODE G2XL”的接收微芯片在876MHz频率上的可接受阻抗匹配,采用沿天线结构建立短线,并配合t型匹配电路。该天线的设计结果是一个紧凑尺寸的天线(75×25×1.6mm3),谐振频率位于867MHz的欧洲频段,其输入阻抗为Z = 16 - j156 Ω。天线采用厚度为35 μm的铜带,制作在厚度为1.6 mm的FR4环氧基板上。本文给出了该天线在各种情况和条件下的仿真结果。从增益、辐射方向图、回波损耗和输入阻抗等方面对天线性能进行了研究。
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