Neurotechnology Researcher & Application Software Engineer
Developing brain-computer interfaces that read neural activity through biophotonic emissions, eliminating the need for invasive electrodes or direct contact sensors.
Exploring telepathic communication with humans, animals, birds, and plants through understanding their biophotonic signatures and consciousness patterns.
Investigating how plants perceive, communicate, and experience their environment through biophotonic analysis and signal processing.
Understanding "what humans did to this universe" and how different entities feel about environmental changes through consciousness research.
Developing GUIs for satellite communication systems, automating calibration processes, and integrating AI for predictive maintenance.
Led automation frameworks reducing test cycles by 70%, deployed CI/CD pipelines enhancing deployment speed by 50%.
Automated infotainment testing, engineered ECU diagnostic systems, trained 15+ engineers on testing frameworks.
Prototyped embedded systems using STM32 microcontrollers and wireless protocols (NFC, Zigbee).
A comprehensive theoretical framework exploring the use of biophotonic emissions for non-invasive brain-computer interfaces.
Detailed implementation of a real-time BCI system using EEG and EOG signals for wheelchair control with high accuracy.
Mathematical framework for molecular analysis with applications in understanding molecular consciousness and communication.
Designed and built a lightweight, cost-effective motorized wheelchair controlled using a hybrid BCI system utilizing EEG and EOG signals.
Achievement: 85% Directional Accuracy
Featured in Periscope Magazine
Developed an image classifier using Support Vector Machines to detect plant diseases based on leaf features.
Achievement: 82% Classification Accuracy
Built an image-processing tool to estimate pothole depth and volume using grayscale contour detection.
Achievement: 78% Accuracy vs Manual
Theoretical review and modeling framework for contactless brain-computer interfaces using biophotonic emissions.
Status: Published Research Paper
Bachelor of Technology - K. J. Somaiya College of Engineering (CGPA: 8.2/10)
I'm actively seeking opportunities to collaborate with research institutions, ethical AI companies, and fellow researchers who share the vision of universal consciousness communication and sustainable neurotechnology.
Research Interests: Biophoton-based BCI, Plant Intelligence, Consciousness Studies, Ethical AI, Universal Communication