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    The application of infrared thermal imager cameras in transformers mainly focuses on the following aspects:


    Fault Detection and Diagnosis


    • Overheat Detection: Infrared thermal imaging cameras can detect the temperature distribution of transformers, helping to identify hotspots and abnormal temperature rises, preventing failures caused by overheating.


    • Partial Discharge Detection: Partial discharge generates localized heat, and infrared thermal imagers can identify these heat source locations, aiding in the early detection and handling of potential issues.


    Maintenance and Monitoring


    • Real-time Monitoring: Using infrared thermal imaging cameras for online real-time monitoring of transformers enables timely understanding of their operational status, ensuring safe and stable operation of the equipment.


    • Regular Inspection: Infrared thermal imager cameras can be used for regular inspections. By periodically capturing infrared images, the temperature change trends of transformers can be recorded to identify potential hazards.


    Cost Savings


    • Preventive Maintenance: Through the monitoring and diagnosis provided by infrared thermal imaging cameras, preventive maintenance can be achieved to avoid unexpected failures that cause power outages and equipment damage, thus saving on repair and replacement costs.


    • Reduction of Labor Costs: The remote monitoring capability of infrared thermal imager cameras reduces the frequency and intensity of manual inspections, increasing maintenance efficiency.


    Enhanced Safety


    • Non-contact Measurement: Infrared thermal imaging cameras achieve non-contact measurement, avoiding the risk of personnel coming into contact with high-voltage equipment, thus improving safety.


    • Efficient Response: Infrared thermal imagers can quickly detect temperature anomalies, ensuring timely response and handling to prevent fault escalation.


    Data Recording and Analysis


    • Historical Data Accumulation: Infrared thermal imaging cameras can record the temperature data of transformers. Through data accumulation and analysis, the operating patterns of the equipment can be understood, optimizing maintenance strategies.


    • Intelligent Analysis: Combining intelligent algorithms and big data analysis techniques, the data from infrared thermal imaging cameras can be used for predictive maintenance and fault warning, enhancing the intelligence level of equipment management.


    The application of infrared thermal imager cameras in transformers not only improves the efficiency of fault detection and diagnosis but also enhances the safety and reliability of equipment operation through preventive maintenance and real-time monitoring, ultimately achieving economic benefits.

    References
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