Robotic Surgical Instruments
Developed real-time motion control algorithms for robotic surgical instruments, enabling precise, stable, and safe manipulation for minimally invasive surgical procedures.
Professional Summary
Robotics Software Engineer with experience in medical robotics, autonomous aerial vehicles, embedded systems, control systems, state estimation, EtherCAT, and robotics software architecture. Experienced in developing real-time robotic control software, onboard flight control systems, mathematical modeling, robotic calibration systems, and autonomous navigation algorithms.
Strong background in C++, Python, robotics algorithms, state estimation, embedded programming, and robotic system integration with industrial as well as research experience. Passionate about designing reliable robotic software frameworks for real-time applications.
Education
| Degree / Level | Institute | Course / Department | Year |
|---|---|---|---|
| M.Tech. | Indian Institute of Technology Jodhpur | Advanced Manufacturing & Design | 2022 |
| B.Tech. | Indian Institute of Technology Jodhpur | Mechanical Engineering | 2019 |
| Class XII | Indian Public School, Madhubani | Science & Math | 2014 |
| Class X | Ramakrishna Mission Vidyapith, Deoghar | CBSE | 2012 |
Professional Experience
SS Innovations Pvt. Ltd.
Mechatronics Engineer (Robotics Software Development)
February 2023 – Present
Responsibilities
- Develop robotics software for surgical robotic systems.
- Designed mathematical models for 30+ cable-driven robotic grippers spanning five different mechanisms.
- Developed control systems for various endo-surgical robotic instruments.
- Developed an automatic calibration framework for robotic linear joints using:
- EtherCAT
- State machines
- Automated calibration algorithms
- Standardized production testing procedures for endo-surgical micro-grippers.
IIT Jodhpur
Research Engineer
Robotics Lab | March 2022 – May 2022
Project
SERB-DST funded project on autonomous unmanned rotorcraft navigation.
Contributions
- Integrated flight controller with Single Board Computer (SBC).
- Implemented visual odometry framework.
Interfaced long-range communication module (RFD900) with custom autopilot.
- Developed communication software for transmission, reception and packet-loss analysis.
- Investigated autonomous hovering and waypoint navigation for helicopter platforms.
Student Project Research Associate
Helicopter Lab | October 2020 – July 2022
Responsibilities
- Improved quadrotor orientation and position control.
- Implemented GPS delay compensation using IMU sensor fusion.
- Studied and implemented modern waypoint navigation algorithms.
- Implemented trajectory tracking algorithms for aerial and mobile robotic platforms.
Project Assistant
Helicopter Laboratory | December 2019 – September 2020
DRDO DYSL-AST Sponsored Project
Development of indigenous onboard Flight Control System (FCS)
Responsibilities
- Developed complete flight-control software framework.
- Implemented:
- State estimation
- Flight control
- Sensor interpretation
- Data processing algorithms
- Developed indigenous reusable software libraries.
- Successfully demonstrated autonomous outdoor flight.
- Delivered software and documentation to DRDO.
Additional Responsibilities
Mid-range RF Communication System
- Designed and developed RF transceiver (>10 km range) for nuclear radiation sensors.
Nuclear Sensor Communication
- Developed communication software for DRDO DELRAD nuclear sensors.
- Used TI TIVA CC1310 LaunchPad.
- Implemented wireless communication and sensor data interpretation.
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