NY
Nitesh Yelve
Indian Institute of Technology Bombay, Father C Rodrigues Institute of Technology, Veermata Jijabai Technological Institute, Dr Babasaheb Ambedkar Technological University
About
Dr Nitesh P. Yelve
Assistant Professor, Mechanical Engg Dept
Indian Institute of Technology Bombay, Mumbai, India
Employment
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Indian Institute of Technology Bombay Assistant Professor2021 - Present
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Father C Rodrigues Institute of Technology Dean (PG Studies) and Associate Professor2003 - 2021
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Dr Babasaheb Ambedkar Technological University Lecturer2001 - 2002
Education
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Indian Institute of Technology Bombay PhD2012 - 2016
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Veermata Jijabai Technological Institute MTech2006 - 2008
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Dr Babasaheb Ambedkar Technological University BTech1997 - 2001
Projects & Funding
Projects & funding information is unavailable.
Publications (71)
- Integrating Machine Learning with Empirical Mode Decomposition for Multiple Fault Diagnosis in Rotating Machinery Save
- A mechanics-based approach using machine learning, analytical, and numerical methods for SH wave propagation in viscoelastic structure Save
- Vibration Dynamic Analysis of the Bearing Parameters in Steam Turbine Bearing Systems in Sugar Refinery Save
- Optimized Multiclass Support Vector Machines Using Empirical Features for Compound Fault Diagnosis in Roller Element Bearings Save
- Performance Analysis of Piezo-ceramic and Piezo-composite Transducers for Lamb Wave Propagation in Plate Structures Save
- Integrating Nonlinear Mode Decomposition and Statistical Parameters for Detecting Multiple Faults in a Rotating Machinery Save
- Stress analysis of laminated and sandwich beams subjected to concentrated load by using quasi-two-dimensional theory Save
- Rolling Element Bearing Fault Diagnosis by the Implementation of Elman Neural Networks With Long Short-Term Memory Strategy Save
- Nonlinear Dynamic Modeling and Experimental Fault Diagnosis of Compound Bearing Faults under Different Lubrication Conditions Save
- Multiscale investigation of winding tension on porosity, misalignment, and mechanical performance of filament-wound CFRP composites Save