Find the signal
Turn complex inputs into priorities that teams can understand and act on.
Technology · Operations · Research
I bring a practical, research-informed perspective to complex work—connecting people, process, and technology to move ideas toward clear outcomes.
With more than five years of professional experience, my path spans technology, operational coordination, and hands-on research. I value careful analysis, dependable execution, and the small improvements that make systems work better.
Turn complex inputs into priorities that teams can understand and act on.
Balance analytical depth with practical constraints, users, and outcomes.
Treat every project as a chance to make the next system clearer and stronger.
Selected projects spanning human movement, computational modeling, and process optimization.
A Department of Science & Technology-funded effort using EMG, optical motion capture, and OpenSim to build an open research framework for yoga postures.
Studied static and dynamic yoga postures using motion capture, surface EMG, and musculoskeletal simulation to analyze inner muscle activity.
Applied the Taguchi method to study how spindle speed, feed rate, and depth of cut influence surface quality in TiC-reinforced aluminium.
Modeled a methane- and syngas-fuelled lean direct injection combustor in SolidWorks and studied combustion instability with ANSYS Fluent.
Recognition
Determination of Muscle Activity, Forces and Length Computationally for Different Yoga Postures Using EMG and OpenSim
23rd INCOFYRA · S-VYASAEducation
Graduate research in computational modeling, biomechanics, materials, and manufacturing.
Credentials
Languages
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