...
首页> 外文期刊>Electronics >IoToF: A Long-Reach Fully Passive Low-Rate Upstream PHY for IoT over Fiber
【24h】

IoToF: A Long-Reach Fully Passive Low-Rate Upstream PHY for IoT over Fiber

机译:IoToF:光纤上的物联网的长途全被动低速率上行PHY

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Internet of things (IoT) devices heavily rely on wireless connectivity. There are intrinsic overlooked limitations such as reach, availability, security and safety vulnerabilities closely associated with wireless solutions. Wired connectivity is the alternative to tackle those issues, and optical fibers directly connecting IoT devices could provide them unique features such as huge bandwidth, long reach, signal integrity and high security grade for the transmitted information. Nevertheless, it can be prohibitive for IoT devices which are power hungry and have costly electrical-to-optical conversions. In this paper, first, a niche is identified for IoT over fiber (IoToF) based on fully passive optical solutions for long reach upstream of low data rate optical connectivity over dark fibers. Then, we proposed, implemented and characterized a prototype physical connectivity (PHY) based on fiber Bragg grating (FBG) low-cost acousto-optic modulation at IoT devices and respective optical edge-filtering as wavelength discriminator at the receiver. Finally, we performed an experimental demonstration of upstream data communication based on simple M-ary frequency-shift keying (FSK), with baud rate of 300 bps transmitted over 30 km range. In terms of data rate and reach for niche applications, IoToF can outperform traditional wireless technologies, such as Sigfox or LoRa. IoToF will enable monitoring urban areas with scarce and polluted spectrum, industrial areas requiring intrinsic safety, and upstreaming data from IoT devices in remote locations with unfavorable wireless propagation but with dark fibers available.
机译:物联网(IoT)设备严重依赖无线连接。存在与无线解决方案紧密相关的固有的被忽略的限制,例如范围,可用性,安全性和安全漏洞。有线连接是解决这些问题的替代方法,直接连接IoT设备的光纤可以为它们提供独特的功能,例如巨大的带宽,远距离,信号完整性和传输信息的高安全等级。然而,对于耗电且电光转换成本高昂的物联网设备,这可能是禁止的。在本文中,首先,基于完全无源光学解决方案确定了光纤IoT(IoToF)的利基市场,该解决方案可在深色光纤上实现低数据速率光纤连接的远距离上游。然后,我们在物联网设备上基于光纤布拉格光栅(FBG)低成本声光调制并在接收器处作为波长鉴别器的相应光学边缘滤波,提出,实现并表征了原型物理连接(PHY)。最后,我们进行了基于简单Mary频移键控(FSK)的上游数据通信的实验演示,在30 km范围内传输了300 bps的波特率。就数据速率和利基应用的覆盖范围而言,IoToF可以胜过Sigfox或LoRa等传统无线技术。 IoToF将能够监控频谱稀缺和污染严重的城市区域,需要本质安全的工业区域,并在无线传播不利但可用深色光纤的情况下,从偏远地区的IoT设备上游上传数据。

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