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Novel Methodology for Increasing the Reading Range of the UWB Passive RFID Chipless Tags Considering Power Regulations

机译:提高考虑动力规则的UWB被动RFID芯片标签的阅读范围的新方法

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This paper presents a reading methodology for RFID readers to overcome the problem of the limited reading range and enhance the reading efficiency of the UWB chipless tags in a noisy environment. We apply this methodology on passive UWB chipless tag consists of a circular patch loaded with multiple rings resonators. The main problem of these passive chipless tags is that the reflected UWB power is hardly detected, because the transmitted UWB power is dramatically low by the FCC regulations. In this work, is a new methodology has been developed to make the best use of the restricted UWB regulations to increase the effective radiated power by the RFID reader. This leads to a significant improvement of the reader range and the overall system performance. The FCC regulation states that the maximum allowed limit for the Effective Isotropic Radiated Power (EIRP) for an UWB device operating in the 3.1-10.6 GHz must not exceed than -41.3 dBm/MHz. However, the FCC regulations allows a peak level of emission with a maximum of 0 dBm, contained within a bandwidth of 50 MHz centered at the frequency at which the highest emission occurs. Therefore, the methodology depends on detecting the presence of a tag in a carrier sense manner using frequency sweeping and hoping techniques, instead of sending an UWB signal. The link budget analysis shows a considerable enhancement in the RFID system range and improving the signal to noise ratio at the reader. Simulation results show the expected improvement of the overall system performance.
机译:本文介绍了RFID阅读器读取的方法,克服了有限的阅读范围内的问题,增强了UWB无芯标签的读取效率,在嘈杂的环境。我们采用被动UWB无芯标签此方法由装有多个环谐振器圆形贴片的。这些被动无芯标签的主要问题是反映UWB功率几乎检测不到,因为UWB发射功率是显着低,在通过FCC的规定。在这项工作中,是一种新方法已经发展到令的限制UWB法规的最佳使用RFID阅读器,以增加有效辐射功率。这导致了读者范围的显著改善和整体系统性能。的FCC条例规定,为有效各向同性辐射功率(EIRP),用于在3.1-10.6千兆赫的UWB设备的操作的允许的上限不能超过大于-41.3 dBm的/兆赫。然而,FCC规则允许发射的峰值电平与最大为0dBm的,含有50兆赫处其中最高辐射发生的频率为中心的带宽内。因此,该方法依赖于使用频率扫描和希望的技术检测标签的存在下,在载波侦听的方式,而不是发送一个UWB信号。链路预算分析示出了在RFID系统的范围相当的增强和提高在读取器的信号噪声比。仿真结果表明系统整体性能的期望改善。

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