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G

Gopalakrishnan G

ECE student

Tiruchirapalli

I am an ECE student with hands-on experience in FPGA design, VLSI & embedded systems through internships at BHEL, MIT Anna University & India Space Lab. I achieved hackathon wins, a cash award at KIT Coimbatore, a published journal paper & a patent. My current focus is on C, Verilog, Xilinx Vivado & Cadence Virtuoso.

Languages
Tamil, English

Skills

CVerilogXilinx VivadoCadence VirtuosoBasic Electronics

Projects

FPGA-Based Traffic Congestion Management System

FPGA-Based Traffic Congestion Management System

Secured 33rd Rank at IAC Hackathon – NIT Jamshedpur

Morse Code Encoder/Decoder (FPGA)

Morse Code Encoder/Decoder (FPGA)

Participated in Hack on Chip – K Ramakrishnan College of Technology

Experience

Bharat Heavy Electricals Limited (BHEL)

29 Jun 2026

MIT, Anna University

26 Jun 2026

India Space Lab

Feb – Mar 2026

Certifications

C Programming

Verilog HDL

TCS CODEVITA

TCS CODEVITA

2025-2026

Workshops

Snake on silicon

Snake on silicon

05.02.2026

Education

K Ramakrishnan College of Engineering

B.E. – Electronics and Communication EngineeringExpected 2028

Achievements & Awards

Presentation Winner – Smart Energy Monitoring System

2026

KIT Coimbatore | Cash Award: ₹1,000

TCS CodeVita – Global Rank 16522

TCS CodeVita Global Coding Competition

Publications & Research

Decision Review Systems on Signals & Systems

October - November (2025)

ERES Journals

Patent Published on "Bamboo Reinforcement Roads"

12.06.2026

GOPALAKRISHNAN G

The present invention discloses a bamboo reinforced road which is a sustainable hamboo fiber road construction project integrated with plastic wastes. Due to heavy traffic and environmental factors, the conventional roads form cracks, potholes, and unevenness, which e tll for periodic maintenance, leading to high construction ts. The project is environmentally sustainable in enhancing the durability the durability and sustainability of roads. This method requires the collection, cleaning and shredding of plastic wastes, after which the shredded plastic wastages are then mixed with the heated hitur e heated bitumen to enhance workability. The treated bamboo fibers act as a reinforcement agent in this case, enhancing flexibility, tensile strength, and durability as well as providing resistance against moisture damage. Sustainable bamboo and plastic materials compound a strong composite material that improves the road's performance. This method advocates for the appropriate management of plastic wastes, preservation of non-renewable resources, and the development of infrastructures at a low To conclude, the project (above) is a sustainable way of building green and sustainable road infrastructure that is long-lasting

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