论文标题
Internet光子传感:使用Internet光纤进行振动测量和监测
Internet Photonic Sensing: Using Internet Fiber Optics for Vibration Measurement and Monitoring
论文作者
论文摘要
在本文中,我们介绍了Internet光子传感(IPS),这是一个基于信号的新框架,用于定型,可从Internet中部署的标准光纤通信硬件获得的信号。 IPS基于以下假设:大气,地震,人为和其他自然活动会导致地球振动,从而触发通过Internet纤维传输数据的标准光学信号的可检测变化。我们假设一个简单的系统组件模型用于光学通信硬件,并识别两个可能反映变形和振动的候选信号,并且可以通过标准接口进行测量:光信号强度(OSS)和位错误率(BER)。我们通过一系列受控的实验室实验来研究IPS的功效,这些实验实验会考虑候选者信号在纤维受到一系列应力时的响应。我们认为,IPS通过提供一个高度敏感的平台,可以在全球范围内提供高度敏感的平台来改变科学,商业和公共安全相关的振动监测应用程序的实践。
In this paper, we introduce Internet Photonic Sensing (IPS), a new framework for deformation and vibration measurement and monitoring based on signals that are available from standard fiber optic communication hardware deployed in the Internet. IPS is based on the hypothesis that atmospheric, seismic, anthropogenic and other natural activity cause vibrations in the earth that trigger detectable changes in standard optical signals that transmit data through Internet fiber. We assume a simple system component model for optical communication hardware and identify two candidate signals that may reflect deformation and vibrations and that can be measured through standard interfaces: Optical Signal Strength (OSS) and Bit Error Rate (BER). We investigate the efficacy of IPS through a series of controlled, laboratory experiments that consider how the candidate signals respond when fiber is subjected to a range of stresses. We believe that IPS offers the potential to transform the practice of scientific, commercial and public safety-related vibration monitoring applications by providing a highly-sensitive platform that is available at a global scale.