Affiliation:
1. College of Naval Architecture and Ocean Engineering, Dalian Maritime University, Dalian 116026, China
Abstract
Centrifugal pumps are susceptible to various faults, particularly under challenging conditions such as high pressure. Swift and accurate fault diagnosis is crucial for enhancing the reliability and safety of mechanical equipment. However, monitoring data under fault conditions in centrifugal pumps are limited. This study employed an experimental approach to gather original monitoring data (vibration signal data) across various fault types. We introduce a multi–scale sensing Convolutional Neural Network (MS–1D–CNN) model for diagnosing faults in centrifugal pumps. The network structure is further optimized by examining the impact of various hyperparameters on its performance. Subsequently, the model’s efficacy in diagnosing centrifugal pump faults has been comprehensively validated using experimental data. The results demonstrate that, under both single and multiple operating conditions, the model not only reduces reliance on manual intervention but also improves the accuracy of fault diagnosis.
Subject
Ocean Engineering,Water Science and Technology,Civil and Structural Engineering
Reference34 articles.
1. Review on the Application of the Nonlinear Output Frequency Response Functions to Mechanical Fault Diagnosis;Liu;IEEE Trans. Instrum. Meas.,2023
2. Fluid dynamics of turbo pumps for artificial hearts;Yamane;Mater. Sci. Eng. C–Biomim. Mater. Sens. Syst.,1996
3. Becker, V., Schwamm, T., Urschel, S., and Antonino-Daviu, J.A. (2020). Fault Investigation of Circulation Pumps to Detect Impeller Clogging. Appl. Sci., 10.
4. Zhang, B., Ren, H., Qiu, S., Yang, X., Liao, G., and Liang, X. (2023). Simulation of Sea Ice Fragmentation Based on an Improved Voronoi Diagram Algorithm in an Ice Zone Navigation Simulator. J. Mar. Sci. Eng., 11.
5. Xie, F., Li, G., Hu, W., Fan, Q., and Zhou, S. (2023). Intelligent Fault Diagnosis of Variable–Condition Motors Using a Dual–Mode Fusion Attention Residual. J. Mar. Sci. Eng., 11.
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