About
Prof. Ravibabu Mulaveesala received M.Tech from National Institute of Technology (NIT), Tiruchirapalli in 2000 and PhD from Centre for Applied Research in Electronics, Indian Institute of Technology Delhi (IITD), India in 2007. His research interests include thermal, acoustical and optical methods for non-invasive/non-destructive imaging technologies. He serves as editorial or advisory boards of the several refereed journals of Institute of Physics, Institute of Electrical and Electronics Engineers (IEEE), Institution of Engineering and Technology (IET), Elsevier etc and also to peer reviewed conferences of IEEE, ISNT etc..
Employment
-
Indian Institute of Technology Delhi Professor2023 - Present
Education
-
Indian Institute of Technology Delhi PhD2002 - 2007
Projects & Funding
Projects & funding information is unavailable.
Publications (147)
- Lock-in photoluminescence imaging for enhancing in-situ detection of multi-source damage in photovoltaic modules Save
- Multimodal thermal wave imaging and pseudo-3D morphological reconstruction for quantitative detection of micron-scale cracks in solder joints Save
- Active infrared thermographic inspection of mild steel using an optimized binary excitation sequence Save
- Automated detection of subsurface defects in GFRP by integration of barker coded thermal wave imaging and deep learning Save
- Two-stage infrared defect analysis: automatic defect detection and post segmentation fusion using SNR-based enhancement Save
- Adaptive tomographic radar thermography: A novel approach for multi-origin defects imaging in hybrid fiber-metal and carbon-fiber laminates Save
- Array-phase controlled thermal wave diffraction tomography: quantitative delamination assessment in carbon fiber/bismaleimide composites Save
- A Phase-Delay Laser Array Thermography System Enhanced by EFF-MD for Defect Detection in Carbon Fiber/Bismaleimide Composites Save
- A Phase-Delay Laser Array Thermography System Enhanced by EFF-MD for Defect Detection in Carbon Fiber/Bismaleimide Composites Save
- Determination of Fragment Ejection Velocity of Rock Fragment Under Uniaxial Compression Loading Before Rock-Burst Using Infrared Thermography Save