Intelligent Systems
From robotic arms to AR assistants, I design platforms where control engineering and AI work together to deliver resilient autonomy in the field.
Robotics & Automation Engineering, Symbiosis International University (2024 — 2028)
I architect solutions that connect hardware reliability with intelligent decision making, from embedded autonomy to full-stack robotics platforms.
I'm a Robotics and Automation Engineering student at Symbiosis International University, Pune, passionate about building intelligent systems that connect hardware, software, and artificial intelligence. My interests span robotics design, machine learning, and embedded systems, where I aim to engineer solutions that enhance automation, precision, and sustainability.
Beyond academics, I'm actively involved in student-led organizations — leading AI initiatives, managing robotics operations, and contributing to finance and community projects. I believe in learning through building and thrive in environments that blend creativity with technology.
Currently exploring research and internship opportunities in robotics, embedded systems, and AI-driven automation.
From robotic arms to AR assistants, I design platforms where control engineering and AI work together to deliver resilient autonomy in the field.
I prototype across embedded firmware, cloud back ends, and human interfaces so teams can validate a complete workflow from day one.
From startup ops to student councils, I translate complex engineering goals into clear plans that keep teams aligned and ready to execute.
A strong academic foundation in robotics and automation, amplified by hands-on projects and active participation across technical communities.
B.Tech in Robotics & Automation Engineering
STEM foundation with leadership across Student Council & MUN.
Diverse leadership roles across campus organizations and startups where I deliver technical outcomes, mentor teams, and keep stakeholders aligned.
Co-leading AI, automation, and community outreach squads across campus.
Bridged engineering output with client-facing strategy for a startup team.
Scaled student leadership programs with a focus on technology policy and diplomacy.
Cross-domain builds where I bridge embedded control, computer vision, and user experience to deliver full-stack robotics and AI solutions.
An Android + AR assistant that helps emergency responders identify medical instruments via on-device image classification.
A web platform that predicts crop prices and empowers farmers to plan sowing decisions with data-backed insights.
A 4-DOF robotic arm featuring PID-based motion control and inverse kinematics for precise manipulation within compact workcells.
A toolchain that spans AI modeling, embedded controllers, and the software surfaces that deliver robotics to end-users.
I'm exploring research and internship roles spanning robotics, embedded systems, defense automation, and AI-driven platforms. Share your mission and I'll pair systems thinking with rapid prototyping to move it forward.
Bench tests for MediCare's AR flows, PID tuning sessions for the robotic arm, and whiteboard plans aligning drones with embedded telemetry stacks.
Coordinating INFIDIT stand-ups, hosting council assemblies for 1000+ students, and moderating Model UN debates focused on technology policy.
I'm always up for conversations about intelligent robotics, defense automation, or AI-infused product roadmaps. Share a brief, a research prompt, or a new challenge and I'll respond quickly with next steps.