...
首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Opto-Electronic Sensor Network Powered Over Fiber for Harsh Industrial Applications
【24h】

Opto-Electronic Sensor Network Powered Over Fiber for Harsh Industrial Applications

机译:光纤供电的光电传感器网络,用于恶劣的工业应用

获取原文
获取原文并翻译 | 示例
           

摘要

Smart electronic devices powered and communicating optically over fiber provide several advantages for harsh industrial applications compared to systems using electrical connections. In spite of advantages such as electromagnetic immunity and high galvanic isolation, power-over-fiber technologies are still only used for special high-end applications due to their high costs compared to conventional power distribution. The main reason for this is the use of high-power laser diodes and photovoltaic cells for most power-over-fiber systems. Therefore, a new cost-effective power-over-fiber approach has been developed using only single standard light-emitting diodes (LEDs) and photodiodes for optical power supply significantly reducing the system's costs and making it suitable for mass-market applications such as the Internet of Things. In addition, the low optical power density inside the fibers makes the network intrinsically safe even in highly explosive environment. The use of incoherent and visible LED light also eliminates the risk of thermal damage to the human retina to occupational safety standards if a fiber is broken or during hot-plugging. A demonstration system has been built which consists of a base station optically powering up to four electronic sensor nodes. Between the base station and each sensor node, data can be exchanged via a bidirectional 2 MBaud optical link. This paper briefly explains the history and state of the art of power-over-fiber systems. The technical challenges of development as well as the steps made to build optically powered low-cost and low-power electronic sensor nodes which overcome the limitations and drawbacks of existing high power solutions are described. Optical, electrical, and computational aspects of the new system are elaborated on. In addition, energy measurements and power budget calculations are described to analyze and optimize the sensor nodes' energy consumption during operation. Finally, the advantages of this new approach are exemplified for smart manufacturing applications.
机译:与使用电连接的系统相比,通过光纤供电并进行光通信的智能电子设备为苛刻的工业应用提供了多个优势。尽管具有电磁抗扰性和高电隔离等优势,但与传统配电相比,光纤供电技术由于成本高昂,因此仍仅用于特殊的高端应用。这样做的主要原因是大多数光纤供电系统都使用了高功率激光二极管和光伏电池。因此,已经开发出一种仅使用单个标准发光二极管(LED)和光电二极管作为光电源的经济高效的光纤供电方法,从而大大降低了系统成本,使其适合于诸如物联网。此外,光纤内部的低光功率密度使网络即使在高度爆炸的环境中也具有本质安全性。如果光纤断裂或在热插​​拔期间,使用不相干和可见的LED灯还可以消除对人体视网膜造成的热损害,从而达到职业安全标准。已经建立了一个演示系统,该系统包括一个基站,为多达四个电子传感器节点光学供电。在基站和每个传感器节点之间,可以通过双向2 MBaud光学链路交换数据。本文简要介绍了光纤供电系统的历史和技术水平。描述了开发中的技术挑战以及构建克服现有大功率解决方案的局限和缺点的光动力低成本和低功率电子传感器节点的步骤。详细介绍了新系统的光学,电气和计算方面。此外,还介绍了能量测量和功率预算计算,以分析和优化操作期间传感器节点的能耗。最后,这种新方法的优势在智能制造应用中得到了体现。

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