International Journal of Innovative Research in Computer and Communication Engineering

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TITLE Advanced Vehicle Communication Network Using Wireless Technology
ABSTRACT The escalating density of vehicular traffic across both urban corridors and rural thoroughfares has created a critical demand for reliable, low-latency Vehicle-to-Vehicle (V2V) communication. This paper presents the design and experimental validation of a hybrid wireless communication framework for advanced vehicular networking. The proposed architecture employs NRF24L01 radio transceivers for extended-range, low-power operation alongside ESP32-hosted Wi-Fi for high-throughput short-range data exchange. A Neo-6M GPS receiver delivers real-time geographic positioning at ±3–5 m precision, while an SW-420 vibration sensor facilitates autonomous emergency alert dispatch upon collision detection. An intelligent channel-management mechanism dynamically selects the optimal transmission medium by evaluating link range, network congestion, and interference levels, thereby reducing latency and packet loss. A two-node prototype achieves an NRF transmission range surpassing 1.8 km under line-of-sight conditions, GPS positional accuracy of ±4 m, and end-to-end emergency notification delivery within 2.8 seconds of shock onset. A browser-accessible dashboard enables centralised fleet monitoring at 5-second update intervals. The findings confirm that robust V2V communication is achievable using economical embedded hardware, forming a reproducible and scalable testbed for next-generation intelligent transportation systems.
AUTHOR ADITYA RANPISE, ANUJ SHAH, SOHAM SARDESHMUKH, PROF. S. G. MADHIKAR UG Students, Dept. of Electronics & Telecommunication Engineering, Sinhgad College of Engineering, Pune, Maharashtra, India Dept. of Electronics & Telecommunication Engineering, Sinhgad College of Engineering, Pune, Maharashtra, India
VOLUME 185
DOI DOI: 10.15680/IJIRCCE.2026.1406036
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KEYWORDS
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