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Optical Technologies for the Internet of Things Era

机译:物联网时代的光学技术

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Internet of Things (IoT) is a network of interrelated physical objects that can collect and exchange data with one another through embedded electronics, software, sensors, over the Internet. It extends Internet connectivity beyond traditional networking devices to a diverse range of physical devices and everyday things that utilize embedded technologies to communicate and interact with the external environment. The IoT brings automation and efficiency improvement to everyday life, business, and society. Therefore IoT applications and market are growing rapidly. Contrary to common belief that IoT is only related to wireless technology, optical technologies actually play important roles in the growth of IoT and contribute to its advancement. Firstly, fiber optics provides the backbone for transporting large amount of data generated by IoT network in the core , metro and access networks, and in building or in the physical object. Secondly, optical switching technologies, including all-optical switching and hybrid optical-electrical switching, enable fast and high bandwidth routing in IoT data processing center. Thirdly, optical sensing and imaging delivers comprehensive information of multiple physical phenomena through monitoring various optical properties such as intensity, phase, wavelength, frequency, polarization, and spectral distribution. In particular, fiber optic sensor has the advantages of high sensitivity, low latency, and long distributed sensing range. It is also immune to electromagnetic interference, and can be implemented in harsh environment. In this paper, the architecture of IoT is described, and the optical technologies and their applications in the IoT networks are discussed with practical examples.
机译:物联网(IoT)是相互关联的物理对象的网络,可以通过Internet上的嵌入式电子设备,软件,传感器相互收集和交换数据。它将Internet连接范围从传统的网络设备扩展到各种物理设备和利用嵌入式技术与外部环境进行通信和交互的日常事物。物联网为日常生活,企业和社会带来了自动化和效率提升。因此,物联网应用和市场正在快速增长。与人们普遍认为物联网仅与无线技术有关的观点相反,光学技术实际上在物联网的增长中起着重要作用,并为物联网的发展做出了贡献。首先,光纤为骨干网,城域网和接入网以及建筑物或物理对象中的物联网网络生成的大量数据传输提供了骨干。其次,光交换技术,包括全光交换和混合光电交换,可在物联网数据处理中心实现快速和高带宽路由。第三,光学传感和成像通过监视各种光学特性(例如强度,相位,波长,频率,偏振和光谱分布)来提供多种物理现象的全面信息。特别地,光纤传感器具有高灵敏度,低等待时间和长分布感测范围的优点。它也不受电磁干扰的影响,可以在恶劣的环境中使用。本文介绍了物联网的体系结构,并通过实例讨论了光学技术及其在物联网网络中的应用。

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