首页> 外文会议>International Symposium on Advanced Electrical and Communication Technologies >Design of Novel Tag for Epidermal UHF RFID Technology and Sensing Applications
【24h】

Design of Novel Tag for Epidermal UHF RFID Technology and Sensing Applications

机译:表皮超高频RFID技术和传感应用的新型标签设计

获取原文

摘要

Epidermal RFID technology is currently emerging research, based on epidermal or Skin tag and reader concept. The tag placed at close distance to the skin, thus providing poor communication performances because of the high dielectric properties of skin tissues. Our goal is to design a flexible and thin tag antenna's having high efficiency and matched to the complex impedance of the chip, the substrate of the tag is required to be not only bio-compatible but also breathable, lightweight and stretchable to ensure the preservation of the natural compositions of the skin. This paper presents the design of epidermal dual-loop tag with meandered line, that is based on external rectangular loop with meandered strip, which add the features of stretchability and more reduction of the antenna size, the loop was fed via T match configuration to achieve impedance match between the antenna and the chip, the tuning mechanism was embedded by adding additional strips to the inner loop, that's allow the UHF tag to be useful in all UHF RFID band, the radiator of the antenna is an adhesive copper insulated from the body by single and thin bio-silicone layer (thickness = 0.6mm, ε= 2.5, σ= 0.005 S/m). The design of the tag is realized by using a simplified model of the human body, consisting of stratified planar layers of defined thickness. The proposed tag design and simulation results details are presented above by employing the HFSS simulator.
机译:基于表皮或皮肤标签和读取器概念的表皮RFID技术目前正在兴起。该标签放置在离皮肤很近的位置,因此由于皮肤组织的高介电性能而提供了较差的通信性能。我们的目标是设计一种高效率的柔性薄标签天线,并与芯片的复杂阻抗相匹配。标签的基底不仅要具有生物相容性,而且还要求透气,轻巧和可拉伸,以确保保护性。皮肤的天然成分。本文介绍了蛇形表皮双环标签的设计,该设计基于蛇形带状外部矩形环,增加了可伸缩性和天线尺寸的减小,该环通过T匹配配置馈电以实现天线和芯片之间的阻抗匹配,通过在内部环路中添加附加条来嵌入调谐机制,这使得UHF标签可在所有UHF RFID频段中使用,天线的辐射体是与人体绝缘的粘性铜单层和薄层生物硅树脂层(厚度= 0.6mm,ε= 2.5,σ= 0.005 S / m)。标签的设计是通过使用人体的简化模型来实现的,该模型由定义厚度的分层平面层组成。上面通过使用HFSS模拟器介绍了建议的标签设计和仿真结果详细信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号