An antenna concept for an optically powered SHF RFID transponder applicable into metal

Johannes Meyer, B. Geck, Ludger Overmeyer, S. Franke
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引用次数: 5

Abstract

This paper presents a hybrid antenna design for an optically powered super high frequency (SHF) RFID transponder applicable for the integration into metal. The key feature of the antenna is its ability to receive microwave signals at SHF for the data communication and optical signals for the power supply of the transponder. The antenna design is based on a circular waveguide which is filled with polymer optical fibers to guide light to the photodiodes to power up the transponder. Additionally a transition is placed within the circular waveguide to transfer the waveguide mode of the SHF signal into a microstrip mode which is a more suitable structure for the integration of electronic transponder components. This paper discusses the constraints and solutions for the here presented combination of SHF microwave and light. Furthermore, the gain of the antenna structure is measured and compared to the simulated one.
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一种适用于金属的光供电SHF RFID转发器的天线概念
本文提出了一种适用于金属集成的光供电超高频RFID应答器的混合天线设计。该天线的主要特点是能够在超高频接收微波信号用于数据通信,并为应答器供电的光信号。天线的设计是基于一个圆形波导,其中填充了聚合物光纤,将光引导到光电二极管,从而为应答器供电。此外,在圆波导内放置一个过渡以将SHF信号的波导模式转换为微带模式,微带模式是更适合集成电子应答器组件的结构。本文讨论了超高频微波与光结合的限制条件和解决方法。此外,还对天线结构的增益进行了测量,并与仿真结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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