IoV

Internet of Things (IoT) technology has revolutionized the automotive and transport sectors. This is accelerated by 5G wireless communication. Industry 4.0 and IoT significantly boosts the market for connected and autonomous vehicle. The basis of 5G technology is basically the guarantee of ultra-high speed data transfer and minimal latency, which results in faster response times and improved reliability


Vehicle manufacturers use the Internet of Things (IoT) to link to cellular networks for real-time navigation, driving aids, integrated entertainment, and emergency services. The use of 5G would greatly accelerate the development of applications like autonomous driving, Vehicle-2-Vehicle (V2V), Vehicle-2-Infrastructure (V2I), Vehicle-2-Network (V2N), and Vehicle-2-Pedestrian (V2P) communications. A Vehicle-to-Everything (V2X) ecosystem may be made possible by 5G’s reliability, availability, speed, and lower latency. The automotive industry is the largest market for 5G IoT solutions.

IoV is an expanded use of IoT for smart transportation. It is intended to serve as a crucial platform for the collection, processing, and analysis of data for intelligent transportation systems. A vehicle will function as a sensor platform, absorbing data from the outside world, from other moving objects, and from the driver and utilising it for traffic management, pollution reduction, and safe navigation. The Internet of Vehicles (IoV) consists of vehicles that communicate with each other as well as with handheld devices carried by pedestrians, roadside units (RSUs), and the public networks using V2V (vehicle-to-vehicle), V2R (vehicle-to-road), V2H (vehicle-to-human) and V2S (vehicle-to-sensor) interconnectivity thereby creating a social network where the participants are intelligent objects rather than the human beings.

A typical IoV architecture consists of three layers:

2· Network layer: This is the communication layer that ensures connectivity to communications networks such as GSM, G5, WiMax, WLAN, Wi-Fi, and Bluetooth. It supports different wireless communication modes such as Vehicle-to-Vehicle (V2V), Vehicle-to-Infrastructure (V2I), Vehicle-to-Pedestrian (V2P). and Vehicle-to-Sensor (V2S).

3· Application layer: This layer includes statistics tools, support for storage, and processing infrastructure. It is responsible for storage, analysis, processing, and decision making about different risk situations such as traffic congestion, bad weather, etc. It represents smart applications, traffic safety, efficiency, and multimedia-based infotainment.

The Internet of Vehicles (IoV) has a variety of application interaction methods.