The conventional ways of controlling traffic jams in Pakistan is the presence of traffic guards and traffic signals, which have tended to prove old, static, and poorly planned system, as a result causing wastage of time and fuel, environmental pollution, and missed people?s opportunities. The proble
IoT based Four Way Smart Traffic Signal Controlling System With Priority to Dense Lanes and Emergency Vehicles
The conventional ways of controlling traffic jams in Pakistan is the presence of traffic guards and traffic signals, which have tended to prove old, static, and poorly planned system, as a result causing wastage of time and fuel, environmental pollution, and missed people’s opportunities. The problem is also caused when there is improper management of traffic police and useless implementation of traffic lights on vacant roads than dense lanes. Several factors cause traffic congestion, including accidents, loss of time, delay of emergency vehicles, etc.
To solve the problems of traffic congestion, a smart yet cheap system is needed to detect the presence of vehicles density, emergency vehicles, and a proportionate time is given to each lane of the road intersection to pass the vehicles. The idea behind creating this system is that a smart way of handling traffic should be implemented in different areas of the country despite traffic guards or static time allocation to traffic signal lanes.
This project is intended to create an IoT (Internet of Things) based Four Way Smart Traffic Signal Controlling System with Priority to Dense Lanes and Emergency Vehicles. The system is cheap and very intelligent such that no on-ground traffic management is required. There will be a three-layer system model, the first layer belongs to input to the system from a surveillance camera and/or a sensor for emergency vehicles (most probably RFID), the second layers act as a middleware that communicates and makes decisions from the input layer to the application layer, the final layer connects the system to IoT to monitor and control within system application. The usage of IoT technology will cause real-time situation detection, which leads the system monitoring and may include taking the appropriate measures. Ultimately, causing a smooth and disciplined flow of traffic.
We have proposed this system that can be easily installed on a four-way road which identifies real-time traffic data based on the connection of the hardware components used in this model, that are cheaper and easily available in the market and this model will surely provide the desired results. With these features added in this project for identifying emergency vehicles and dense lanes to avoid stuck in congestion, there are a few aspects that are suggested for future study to improve the system by implementing new features. The scope of our project is to improve conventional systems of traffic in Pakistan, and it would be easy to manufacture such models in our country. This project could be programmed in any way to monitor and control the traffic and will be useful for planning a proper road system.
Creating a real-time IoT-based Smart Traffic Signal Controlling System on a 4-way road intersection to avoid traffic congestion and giving signaling time priority to Dense Lanes and Emergency Vehicles. The objectives to achieve this aim are as follows:
The main part of the project includes the hardware system, including the components: Raspberry Pi 4, Sensor (RFID), Surveillance Camera, traffic signals, Jumper Wires, and a four-way intersection model, which is later constructed physically so the actual working with traffic flow is examined. Lastly, the connection of the system to IoT is carried out so to check the actual working and implementation of the system on a real-time basis.
A Smart Traffic Signal Controlling System will be developed in the Raspberry Pi Python IDE. The connectivity of the internet is required on a full-time availability as it is based on IoT, so to send and monitor the traffic signal via surveillance camera from the remote monitoring and controlling. The entire design of the physical model will be done after testing each hardware device and obtaining its possible accurate results.
This system will include two main user classes. The vehicles who are in an emergency or those who have created dense traffic lanes. The following scenarios create the functions of this project.
IoT-based Four-way Smart Traffic Signal Controlling System provides a feasible and intelligent system that looks after the traffic congestion on a four-way traffic road and provides a considerable amount of time on each lane for smooth traffic flow. Given below are the benefits of the system.
The project was intended to be completed in two semesters. The initial months of the project used Arduino as microcontroller and different sensors for emergency vehicles detection such as ultrasonic sensors and traffic density detection such as ultrasonic sensors. By the end of the first semester, the project came upon a fixed solution to use those hardware devices which provided accurate results.
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| Raspberry Pi | Equipment | 2 | 26000 | 52000 |
| C-Type Charger | Equipment | 1 | 1000 | 1000 |
| Memory Card | Equipment | 2 | 1000 | 2000 |
| RFID | Equipment | 5 | 500 | 2500 |
| Pi Camera | Equipment | 5 | 1000 | 5000 |
| Jumper Wires | Equipment | 200 | 10 | 2000 |
| HDMI | Equipment | 2 | 500 | 1000 |
| Traffic Lights | Equipment | 6 | 400 | 2400 |
| Thermocol Sheet | Miscellaneous | 2 | 200 | 400 |
| Chart sheet | Miscellaneous | 4 | 100 | 400 |
| Toy Cars | Miscellaneous | 10 | 100 | 1000 |
| Raspberry Pi GPIO extension | Equipment | 2 | 100 | 200 |
| Total in (Rs) | 69900 |
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