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Intelligent Motor Testing Upgrade Project
Intelligent Motor Testing Upgrade Project
Intelligent Motor Testing Upgrade Project
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  • Intelligent Motor Testing Upgrade Project
  • Intelligent Motor Testing Upgrade Project
  • Intelligent Motor Testing Upgrade Project

Intelligent Motor Testing Upgrade Project

Service Hotline:+86-19174888669

Application Scenarios

1. Covers 10 kV high-voltage motors with ratings of 2.5 MW and below, providing one-stop completion of all type tests—no-load, loaded, and temperature-rise—and standardizing the implementation of core performance verification and testing for these motors.

2. Equipped with a high-precision data acquisition module, it enables accurate real-time monitoring of motor vibration and noise, quantifies operational dynamic performance metrics, and ensures equipment operates smoothly while meeting noise‑level standards.

3. Collect motor energy consumption and operational data across the entire process, conduct specialized efficiency tests and calculations, accurately determine the motor’s energy efficiency class, and support the development of energy‑efficient motors as well as factory acceptance testing.

4. The entire testing process features automated parameter acquisition and permanent cloud-based archiving, establishing a dedicated motor‑testing database that ensures traceability of test data and standardized management.

5. Leveraging digital analytics models to perform multidimensional decomposition and comparative analysis of archived test data, enabling rapid identification of performance defects, optimization of motor design, and enhanced product iteration and quality control.

 

Application Results

The intelligent upgrade project for motor testing has established an integrated, comprehensive testing platform that fully encompasses the complete set of type‑test capabilities—no‑load, loaded, and temperature‑rise—for high‑voltage motors up to 2.5 MW and 10 kV. It simultaneously enables multi‑dimensional, high‑precision performance assessments of vibration, noise, and energy consumption, while providing one‑stop calibration of all key performance parameters for high‑voltage motors. The system incorporates a full‑range automated data acquisition and storage module, along with intelligent analytics, ensuring end‑to‑end data traceability and digitalized evaluation of test metrics. By breaking away from the traditional inefficient paradigm of segmented testing and manual record‑keeping, this project significantly enhances both testing accuracy and coverage, enabling precise identification of motor performance defects and quantitative measurement of energy efficiency and operational stability. It delivers robust data support for product R&D and iterative improvements, as well as stringent quality control at the factory level, thereby establishing a standardized, digital, and intelligent testing and inspection framework for high‑voltage motors and strengthening the company’s core competitive edge in premium motor quality management.