Hi!
I am Luva
I am a Developer

Electronics, Communication & Information Engineer

about me

who am i?

Hi, I am Luva I am a systems-oriented engineer and technical architect who operates at the convergence of theoretical AI, practical hardware systems, and full-stack development. My approach is driven by a core philosophy: leveraging deep technical knowledge—from embedded firmware and microprocessor assembly to modern machine learning architectures—to build coherent, efficient systems that solve complex, real-world problems. I specialize in bridging the gap between abstract theoretical logic and practical, hardware-constrained applications, focusing on the "entire stack" of a project, from a sensor’s voltage output to high-level knowledge representation and web visualization. Whether I am implementing low-level graphics algorithms in C, analyzing control systems stability, or designing AI search strategies, my work is defined by a methodical "Objective → Theory → Implementation → Observation" framework. With a background in A-Level Economics that informs my lens of resource optimization and a commitment to meticulous, academic-standard documentation, I aim to build validated, integrated solutions where the boundaries between hardware, software, and intelligence are blurred.

Web Development

Web Design

Machine Learning

Data Science

309 Cups of Coffee 356 Lab Reports 300 Assignments 10 Engineering Projects

education

my education

SEE (A+) 2020

Shankari School

A Level 2022

Budhanilkantha School

Bachelor of Engineering BEIRunning

National College of Engineering

My speciality

My skills

85%

HTML

90%

CSS

75%

JavaScript

86%

C++

88%

C

35%

Unity

40%

C#

30%

AI/ML

25%

Blender

28%

Audacity

65%

Leadership

62%

Baker

78%

Finance & Mgmt

65%

Yapper

Experience & Technical Engagements

My Experience

Mechatronics Prototyper

Independent Engineering Projects

  • Automatic Irrigation System: Designed and implemented a self-regulating irrigation loop using soil moisture sensors and automated valve control to optimize resource management.
  • IR Sensor Smart Glasses: Engineered an assistive technology prototype for obstacle detection, bridging infrared sensing hardware with real-time feedback logic.
  • Hardware-Software Integration: Developed control logic for sensor-actuator systems, ensuring precise response times between physical inputs and digital processing.

Low-Level Graphics Developer

Algorithmic Projects

  • Computer Graphics: Beyond basic rendering, implemented a suite of algorithms including DDA and Bresenham's for line generation, and custom functions for drawing and filling complex polygons (triangles, pentagons).
  • Numerical Computing: Developed high-precision solvers in Python for root-finding (Bisection, Newton-Raphson, Secant) and linear systems (Gauss-Jordan, Gauss-Seidel).
  • Computational Calculus: Implemented numerical integration (Simpson's, Boole's, Weddle's) and solved ordinary differential equations using the Runge-Kutta (RK4) method.
  • AI Search & Logic: Architected problem-solving agents using Uninformed Search (BFS, DFS, UCS) and modeled decision optimization using Minimax with Alpha-Beta Pruning.
  • Interactive Systems: Built a graphics-based Tic-Tac-Toe game in C, bridging low-level memory management with real-time interactive logic.

Active Member

IT Club, National College of Engineering (NCE)

  • Collaborated on club-based web projects, focusing on backend infrastructure and managing Docker-based development environments for reproducible workflows.
  • Participated in technical discussions regarding system integration and modern dev tools to support team-wide deployment.

Active Member

Mathematics Club, BNKS

  • National Level Coordination: Successfully organized the Math League, a national-level mathematics competition, managing logistics, participant engagement, and event flow.
  • Event Management: Led various small-scale technical events and math challenges, fostering a community of analytical thinkers and problem solvers.
  • Strategic Planning: Orchestrated event schedules and resource allocation, demonstrating strong organizational leadership alongside mathematical rigor.

Get in Touch

Contact Me