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Coverage and read range comparison of linearly and circularly polarised radio frequency identification ultra-high frequency tag antennas

机译:线性和圆极化射频识别超高频标签天线的覆盖范围和读取范围比较

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摘要

This study presents a comparison between two dipoles acting as representatives of ultra-high frequency radio frequency identification (RFID) circularly polarised (CP) and linearly polarised (LP) tag antennas, respectively. As the CP dipole is derived from the LP dipole, they have equivalent reflection coefficient and radiation efficiency values, allowing the comparison to be focused on polarisation and radiation pattern. Then, a comparison of RFID angular and read range is investigated. This is conducted by combining the interrogation of CP and LP tags emulators by CP and LP readers with regulated power. The emulators are made up of the CP and LP dipoles embedded onto RFID tags with analog front-ends. A methodology is described for measuring the maximum angular and read ranges, involving maximum power allowed by European regulation. A 17.9% extra range is achieved by the CP tag and the CP reader compared to the LP tag with any kind of reader. Furthermore, null cancellation is observed in the former case in the region of interest.
机译:这项研究提出了分别代表超高频射频识别(RFID)圆极化(CP)和线性极化(LP)标签天线的两个偶极子之间的比较。由于CP偶极子是从LP偶极子衍生而来的,因此它们具有相等的反射系数和辐射效率值,从而可以将比较集中在极化和辐射方向图上。然后,研究了RFID角度和读取范围的比较。这是通过将CP和LP标签读取器对CP和LP标签仿真器的询问与调节后的功率相结合来进行的。仿真器由嵌入在具有模拟前端的RFID标签中的CP和LP偶极子组成。描述了一种用于测量最大角度和读取范围的方法,涉及欧洲法规允许的最大功率。与使用任何类型读取器的LP标签相比,CP标签和CP读取器可实现17.9%的额外范围。此外,在前一种情况下在感兴趣区域中观察到零抵消。

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