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Implementation of Radiating Elements for Radiofrequency Front-Ends by Screen-Printing Techniques for Internet of Things Applications

机译:物联网应用中的丝网印刷技术实现射频前端的辐射元件

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摘要

The advent of the Internet of Things (IoT) has led to embedding wireless transceivers into a wide range of devices, in order to implement context-aware scenarios, in which a massive amount of transceivers is foreseen. In this framework, cost-effective electronic and Radio Frequency (RF) front-end integration is desirable, in order to enable straightforward inclusion of communication capabilities within objects and devices in general. In this work, flexible antenna prototypes, based on screen-printing techniques, with conductive inks on flexible low-cost plastic substrates is proposed. Different parameters such as substrate/ink characteristics are considered, as well as variations in fabrication process or substrate angular deflection in device performance. Simulation and measurement results are presented, as well as system validation results in a real test environment in wireless sensor network communications. The results show the feasibility of using screen-printing antenna elements on flexible low-cost substrates, which can be embedded in a wide array of IoT scenarios.
机译:物联网(IoT)的出现导致将无线收发器嵌入到各种设备中,以实现情景感知方案,其中预见到大量收发器。在此框架中,需要具有成本效益的电子和射频(RF)前端集成,以便通常将通信功能直接包含在对象和设备中。在这项工作中,提出了一种基于丝网印刷技术的柔性天线原型,该原型在柔性低成本塑料基板上使用了导电油墨。考虑了诸如衬底/墨水特性之类的不同参数,以及制造过程中的变化或器件性能中的衬底角偏转。在无线传感器网络通信的真实测试环境中,给出了仿真和测量结果以及系统验证结果。结果表明在柔性低成本基板上使用丝网印刷天线元件的可行性,该基板可嵌入各种IoT场景中。

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