Scalable 3D-printer infrastructure
Built and operated an OctoPrint-based printer farm with Dockerized services, custom plugins, and secure proxying behind university firewalls.
View projectI’m Prabesh Shrestha, an engineer and researcher working across robotics, embedded systems, sensing, fabrication, and connected machines.
Projects where the interesting work lives at the boundary between physical systems, embedded computation, and software infrastructure.
Built and operated an OctoPrint-based printer farm with Dockerized services, custom plugins, and secure proxying behind university firewalls.
View projectROS 2 autonomous platform using a Jetson Orin Nano, RPLiDAR A1, and ZED 2i, with responsibility for hardware integration and system bring-up.
View projectDeveloped ESP-based recording firmware with wireless reflashing and custom memory repartitioning, and redesigned the data-retrieval hardware schematics.
View projectMulti-node agriculture sensing system with live soil and environmental data, cloud processing, ML recommendations, and a real-time monitoring dashboard.
View projectHands-on roles spanning human-subject research, industrial robotics, makerspace infrastructure, electronics, and product development.
Ballistic Cardiogram Lab · Texas State University
Ingram Hall Makerspace · Texas State University
IEEE Robotics & Automation Society
Wired Circuit Pvt. Ltd. · Kathmandu, Nepal
I like projects where the answer is not “hardware or software,” but both.
Universal Robots, UR ROS 2 driver, ROS 2 Humble, OnRobot grippers
Jetson Nano / Orin, Arduino, ESP8266, ATmega328P, STM32, RP2040
KiCad, SolidWorks, PCB design, soldering, oscilloscopes, multimeters
C/C++, Python, Rust, Bash, JavaScript, Git, Linux, Docker, MATLAB
FDM 3D printing, CNC, laser cutting, arc welding, milling, lathes
OctoPrint, Dockerized services, Linux systems, machine integration
I’m pursuing a B.S. in Electrical & Electronics Engineering at Texas State University, where I work in research, robotics, and the Ingram Hall Makerspace.
My work tends to converge on the same problem: getting real physical systems to produce useful data, make decisions, and behave reliably. That has taken me from embedded firmware and PCB design to ROS 2 robots, industrial arms, IoT networks, and printer-farm infrastructure.
I’m especially interested in robotics, sensing, distributed embedded systems, edge computing, and the infrastructure that makes fleets of machines easier to operate.
Texas State University · Expected May 2028
I’m always interested in research, robotics, embedded systems, and ambitious hardware/software projects.