DFOS self-anomaly detection system for safer infrastructures
Aspects of the present disclosure describe distributed fiber optic sensing (DFOS) systems, methods, and structures that advantageously extend DFOS techniques to anomaly detection using optical magnetism switches (OMC) that are integrated into the DFOS system.
1. A distributed fiber optic sensing (DFOS) system with self-anomaly detection comprising:
a length of optical sensing fiber;
a DFOS interrogator/analyzer in optical communication with the length of optical sensing fiber, said DFOS interrogator/analyzer configured to generate interrogation pulses, inject the generated interrogation pulses into the optical sensing fiber, detect/analyze reflected/backscattered signals from the optical sensing fiber to determine and output environmental conditions encountered along the length of optical sensing fiber; and
one or more optical magnetism switches (OMS) in optical communication with and disposed along the length of optical sensing fiber, said magnetism switches configured to alter light path(s) in the optical sensing fiber in response to a mechanical condition experienced by the magnetism switch such that it is detected/analyzed by the DFOS interrogator/analyzer;
wherein the one or more OMS affect the light path(s) by the moment of a magnet included in the one or more OMS;
wherein the one or more OMS are 1×2 switches with three ports configured such that 2 of the ports are directly connected to the optical sensing fiber and the third port is connected to the optical sensing fiber via an optical isolator.