Anirudh Marpally
Software engineer with 4+ years of experience building enterprise-grade Java applications at Concentrix Catalyst (Union Pacific Railroad). Specialised in designing secure, scalable microservices with Spring Boot, modernising legacy codebases from Java 8 to Java 17, and maintaining production-grade CI/CD pipelines with 95%+ test coverage. Currently pursuing M.Tech at Defence Institute of Advanced Technology (DIAT), Pune, with research focus on NLP and language modelling for low-resource languages. Passionate about bridging the gap between software engineering best practices and cutting-edge machine learning research.
Education
M.Tech — Modelling & Simulation, DIAT Pune (CGPA: 7.07)
B.Tech — Electrical Engineering, Vardhaman College (CGPA: 7.87)
Experience
Junior Software Engineer @ Concentrix Catalyst
Since Mar 2022, Java Developer
Research Focus
Low-resource NLP • Telugu language modelling • Reasoning-based LLMs for mathematics • Transformer architectures
Academic & Competitive Credentials
GATE 2022 EE: 357 • GATE 2022 EC: 333
Presented research paper titled “Regenerative Braking Systems in Electric Vehicle”
published at RTPEE–2022, SSN College of Engineering
Projects
Developing a reasoning-based language model to solve mathematical problems up to 12th-grade level. Focus on symbolic reasoning, logical inference, and step-wise mathematical modelling.
Implementing and fine-tuning transformer-based language models using PyTorch. Focus on tokenization, dataset preprocessing, and architecture scaling for low-resource languages.
Full-stack movie ticket booking application using Spring Boot (backend) and React JS (frontend). Flexible movie selection filters by time, date, and location with Oracle/MySQL integration.
Course management system using Spring Boot and Spring Data JPA. CRUD operations for courses, instructors, and students with optimised Oracle queries.
Modelled and compared regenerative braking efficiencies using synchronous motor, BLDC motor, and induction motor. Developed mathematical models for energy recovery and system performance analysis.
Designed a real-time executable solar-powered charging system using DC–DC buck converter. Targeted portable power solutions for rural and hilly regions with limited grid access.
I'd love to hear from you — whether it's a collaboration opportunity, technical discussion, or feedback on this project. Let's connect!