Hydroelectric Plant Safety: Real-Time Monitoring Utilizing Fiber-Optic Sensors

Author:

Faraco Renato Luiz1ORCID,Barino Felipe1ORCID,Campos Deivid1ORCID,Sampaio Guilherme1,Honório Leonardo2,Marcato André2ORCID,Bessa dos Santos Alexandre1ORCID,dos Santos Clayton Cesar3,Hamaji Fernando3

Affiliation:

1. Instrumentation and Telemetry Laboratory, Federal University of Juiz de Fora, Juiz de Fora 36036-900, Brazil

2. Departamento de Energia Elétrica, Federal University of Juiz de Fora, Juiz de Fora 36036-900, Brazil

3. Santo Antônio Energia, Porto Velho 04548-001, Brazil

Abstract

In the context of hydroelectric plants, this article emphasizes the imperative of robust monitoring strategies. The utilization of fiber-optic sensors (FOSs) emerges as a promising approach due to their efficient optical transmission, minimal signal attenuation, and resistance to electromagnetic interference. These optical sensors have demonstrated success in diverse structures, including bridges and nuclear plants, especially in challenging environments. This article culminates with the depiction of the development of an array of sensors featuring Fiber Bragg Gratings (FBGs). This array is designed to measure deformation and temperature in protective grids surrounding the turbines at the Santo Antônio Hydroelectric Plant. Implemented in a real-world scenario, the device identifies deformation peaks, indicative of water flow obstructions, thereby contributing significantly to the safety and operational efficiency of the plant.

Funder

Santo Antônio Energia

Publisher

MDPI AG

Reference42 articles.

1. Loading Condition Estimation Using Long-Period Fiber Grating Array;Barino;IEEE Sens. J.,2021

2. Double bridge circuit for self-validated structural health monitoring strain measurements;Costa;Strain,2018

3. Bose, A.K., Zhang, X., Maddipatla, D., Masihi, S., Panahi, M., Narakathu, B.B., Bazuin, B.J., and Atashbar, M.Z. (2019, January 8–10). Highly Sensitive Screen Printed Strain Gauge for Micro-Strain Detection. Proceedings of the 2019 IEEE International Conference on Flexible and Printable Sensors and Systems (FLEPS), Glasgow, UK.

4. Choi, H., Choi, S., and Cha, H. (2008, January 17–19). Structural Health Monitoring System Based on Strain Gauge Enabled Wireless Sensor Nodes. Proceedings of the 2008 5th International Conference on Networked Sensing Systems, IKanazawa, Japan.

5. An Ideal strain gage placement plan for structural health monitoring under seismic loadings;Vafaei;Earthquakes Struct.,2015

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