The distributed fiber optic all-weather excavation monitoring technology based on IL has engineering advantages such as high sensitivity (about 10n ε), lunga distanza di monitoraggio (fino a decine di chilometri), elevata precisione di posizionamento (in meters), no need for outdoor power supply, convenient deployment, and strong concealment. By utilizing the backward Rayleigh scattering of light pulses in optical fibers, real-time continuous monitoring of disturbance information on fiber optic links can be achieved. External disturbance signals such as excavation and blasting cause fiber optic deformation by generating soil vibrations, which are then detected by DAS systems. This technology uses distributed quantitative signal demodulation and pattern recognition technology to monitor disturbances along optical fibers online, combined with spatial positioning methods based on array signal processing for disturbance source stereo positioning, ultimately achieving distributed all-weather stereo monitoring.
With the continuous development of sensing technology, people’s demand for sensor technology is also increasing day by day. It is rare to find vibration sensors that simultaneously meet the conditions of high sensitivity, basso costo, simple preparation process, and good stability. In the process of sensing and detection, sensitivity and stability are the main technical influencing factors, while preparation process and cost are important influencing factors in industrial production. Vibration sensors that combine these advantages are receiving increasing attention and favor.
Rilevamento delle vibrazioni in fibra ottica technology is a type of technology that changes the characteristics of the transmitted light in optical fibers when the fiber optic sensor is affected by external interference. By using special sensing equipment to collect and analyze signals, changes in the characteristics of light can be detected, rilevando così la vibrazione degli oggetti.
Functional characteristics of sistema distribuito di monitoraggio delle vibrazioni in fibra ottica
1. Visual alarm display: Provides a visual display interface that maps the position of the fibra ottica cable to the image through a graphical configuration module. Once an intrusion accident occurs at a certain point, le informazioni sull'allarme vengono visualizzate direttamente sull'immagine, which is visually intuitive.
2. Vibration curve display: The system can display the vibration signal distribution curve of the entire optical cable in real time. When the vibration signal strain is abnormal in a certain area, the real-time information of that area can be displayed through the curve.
3. Partition/graded event alarm: Provides multiple flexible alarm methods, and alarm parameters can be set in grades and regions.
4. Historical statistical analysis: Provides statistical analysis of historical vibration data, compreso: a The vibration distribution curve of different positions of the optical cable at a certain time b. The vibration change curve of a certain point of the optical cable during a certain period of time.
5. Intelligent pattern recognition: The system can obtain information such as the time, posizione, and trend of vibration events. By analyzing the vibration waveform and extracting characteristic signals, combined with big data, apprendimento automatico, and neural network recognition algorithms, the type of vibration event can be determined, and intrusion events can be warned in advance to ensure operational safety.
Sensore di temperatura a fibra ottica, Sistema di monitoraggio intelligente, Produttore di fibra ottica distribuito in Cina
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Sensori di temperatura a fibra ottica INNO ,sistemi di monitoraggio della temperatura.



