Implementación y operatividad de un sistema de monitoreo inteligente de detección y diagnóstico de fallas en una faja transportadora de mineral de 8.8 km en una unidad minera (Shougang Hierro Perú)
Date
2025-03-03
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Pontificia Universidad Católica del Perú
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Abstract
El presente trabajo tiene como objetivo principal el diseño e implementación y
operatividad de un sistema de monitoreo inteligente para la detección y diagnóstico de
fallas en una faja transportadora de mineral de 8.8 km de longitud de longitud en la unidad
minera de Shougang Hierro Perú. La tesis incluye el diseño y desarrollo de un sistema de
inspección que utiliza tecnologías avanzadas como el procesamiento digital de imágenes.
Para alcanzar este objetivo, se realizaron varias etapas de investigación y desarrollo,
incluyendo la adecuación y evaluación de la alimentación de energía, la recolección y
análisis de datos mediante sensores. Los resultados demostraron que el sistema
incrementó la eficacia operativa, redujo los tiempos de parada y extendió la vida útil de
la faja transportadora al identificar problemas tempranamente y permitir un
mantenimiento preventivo más efectivo.
Las conclusiones destacan la mejora en la detección y diagnóstico de fallas. Lo que
aumento la confiabilidad y eficiencia operativa. Se recomienda seguir investigando,
capacitar al personal, integrar el sistema de monitoreo con la gestión de mantenimiento,
y realizar actualizaciones periódicas para mantenerse al día con las innovaciones
tecnológicas.
Este estudio proporciona una guía útil para la implementación y mejora continua de
sistemas de inspección y detección de fallas en fajas transportadoras de mineral,
contribuyendo significativamente a la optimización de la gestión de mantenimiento en la
industria minera.
The main objective of this work is the design, implementation and operation of an intelligent monitoring system for the detection and diagnosis of faults in an 8.8 km long mineral conveyor belt in the Shougang Hierro Perú mining unit. The thesis includes the design and development of an inspection system that uses advanced technologies such as digital image processing. To achieve this objective, several stages of research and development were carried out, including the adaptation and evaluation of the power supply, the collection and analysis of data using sensors. The results showed that the system increased operational efficiency, reduced downtime and extended the useful life of the conveyor belt by identifying problems early and allowing more effective preventive maintenance. The conclusions highlight the improvement in the detection and diagnosis of faults, which increased operational reliability and efficiency. It is recommended to continue researching, train personnel, integrate the monitoring system with maintenance management, and perform periodic updates to keep up with technological innovations. This study provides useful guidance for the implementation and continuous improvement of inspection and fault detection systems in mineral conveyor belts, contributing significantly to the optimization of maintenance management in the mining industry.
The main objective of this work is the design, implementation and operation of an intelligent monitoring system for the detection and diagnosis of faults in an 8.8 km long mineral conveyor belt in the Shougang Hierro Perú mining unit. The thesis includes the design and development of an inspection system that uses advanced technologies such as digital image processing. To achieve this objective, several stages of research and development were carried out, including the adaptation and evaluation of the power supply, the collection and analysis of data using sensors. The results showed that the system increased operational efficiency, reduced downtime and extended the useful life of the conveyor belt by identifying problems early and allowing more effective preventive maintenance. The conclusions highlight the improvement in the detection and diagnosis of faults, which increased operational reliability and efficiency. It is recommended to continue researching, train personnel, integrate the monitoring system with maintenance management, and perform periodic updates to keep up with technological innovations. This study provides useful guidance for the implementation and continuous improvement of inspection and fault detection systems in mineral conveyor belts, contributing significantly to the optimization of maintenance management in the mining industry.
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Keywords
Fallas del sistema (Ingeniería)--Sensores, Mantenimiento (Ingeniería), Procesamiento de imágenes digitales--Técnicas digitales, Sistemas de control inteligente, Fajas transportadoras
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