Area of research
Mechanical Engineering · Control and Systems Engineering
Research interest
Research focused on Structural engineering and Fault (geology), with related work in Vibration, Convolutional neural network, Thresholding. Notable publications include 'A new bearing fault diagnosis method based on signal-to-image mapping and convolutional neural network', 'Compressive sensing reconstruction for rolling bearing vibration signal based on improved iterative soft thresholding algorithm', and 'Effect of a Novel Tooth Pitting Model on Mesh Stiffness and Vibration Response of Spur Gears'.
Quantitative evaluation of agriculture water resources carrying capacity in Turpan–Hami Basin
Assessing Land Use Efficiency in the Tarim River Basin: A Coupling Coordination Degree and Gravity Model Approach
A Snowmelt Flood Early Warning Model Based on Simulated Annealing Algorithm--A Case Study of the Hutubi River
A Snowmelt Flood Early Warning Model Based on Simulated Annealing Algorithm
Compressive sensing reconstruction for rolling bearing vibration signal based on improved iterative soft thresholding algorithm
A novel abnormal data detection method based on dynamic adaptive local outlier factor for the vibration signals of rotating parts
Effect of a Novel Tooth Pitting Model on Mesh Stiffness and Vibration Response of Spur Gears
A new bearing fault diagnosis method based on signal-to-image mapping and convolutional neural network
Mesh stiffness calculation and vibration analysis of the spur gear pair with tooth crack, considering the misalignment between the base and root circles
Fault Recognition of Rolling Bearings Based on Parameter Optimized Multi-Scale Permutation Entropy and Gath-Geva
The Mkurtogram: A Novel Method to Select the Optimal Frequency Band in the AC Domain for Railway Wheelset Bearings Fault Diagnosis