Intelligent Car Parking Reservation System

When the car departs, the fare timer ends and the system sends a text message to the user indicating the total fare Shown. There they are asked to fill in the required details and the time slot e. If the slot is available, they can select the slot and mention the time from which they are willing to

2025-06-28 16:27:57 - Adil Khan

Project Title

Intelligent Car Parking Reservation System

Project Area of Specialization Internet of ThingsProject Summary

When the car departs, the fare timer ends and the system sends a text message to the user indicating the total fare Shown. There they are asked to fill in the required details and the time slot e. If the slot is available, they can select the slot and mention the time from which they are willing to use the parking area at a particular place the block architecture of a slot reservation of vehicle parking the Raspberry Pi serves as the main processor of the system. The users have to pre-book a parking slot for themselves through an app or android application and can see slots are available/unavailable. There they are asked to fill in the required details and the time slot at a particular place. If the slot is available, they can select the time slot and mention an expected time out. hey are willing to use the parking arena, and once done they immediately receive a confirmation message on their smartphones. When the user enters his details on this smart parking application, the details are updated on the database and the corresponding slot is updated as unavailable on the android application. When a user arrives at the entry gate of the designated parking area, the IR sensor detects its presence at the gate. If it finds a match, the gate is opened and if not, the gate will not open. A camera module present at the entrance scans the car number plate. This sensor car module captures and transmits the data to the cloud. The entry time for that user is recorded. On departure from the slot, the IR sensor will detect no object in the slot and this signal will be sent to the timer and it will stop. The exit time is calculated and the user will receive an SMS regarding the fees to be paid at the registered mobile number. The user needs to pay the fee before exiting the parking arena. IR sensor detects the vehicle at the exit gate and the gates are opened for the vehicle to exit the parking arena. Till the time. As the car leaves the parking arena the sensor output turns high and the gates are closed

Project Objectives

The objective to implement this project is to allow us to constitute a low costing IOT-based intelligent car parking reservation system. we expand our perspective on framework design and proposed system architecture work using Optical Character Recognition and face recognition to supply two-way security using Raspberry-pi. Highlighting the important features of our work, we have again mentioned the convenience and benefits. The proposed system captures and processes the circular image taken on the parking lot and generates information on car parking spaces. In this work, a camera is used as a sensor to show the presence of car parks on the LCD screen for taking pictures. The reason for using the camera is that it can detect the presence of several cars simultaneously through a single image. In addition, the camera can be easily moved to detect different car parking slots by keeping this image, specific car parks can be found empty, and then the processed information is used to guide the driver to the available car park instead of wasting time searching for it. Be done the proposed system is developed in both software and hardware platforms

Project Implementation Method

Introducing IoT in this system is a major enhancement for the betterment of this technology, to know about this system let us tell you about what IoT is. IoT which is more often known as the “Internet of Things” is simply known as integrating things and many technologies. The intelligent stopping system supports the detection of available parking spaces. Framed commercial buildings are equipped with sensors that detect when vehicles are approaching or leaving and provide these areas for vehicles to move. Large stops are a must, as parking spaces will be open to the public as long as there is an urban city and community. Smart city maximum problems pollution garbage some of the fuel problems but smart city problem is a different easy life to the urban city. Although some cities are introducing improved stop control measures, many drivers are not aware of these stopping principles. Some urban communities lack the funds to implement meaningful agreements. To address these challenges and limit fuel losses, doors are opened and the entry times of those customers are recorded. It is proposed to use clever still frames and make these devices more popular. One of the best-known and fastest-growing up-and-coming city options on the planet, it's a dazzling stopover. Airport terminals, universities, colleges, schools, shopping malls, emergency clinics, train stations, ground, road and city parking lots are just some models.

Benefits of the Project

With the incrementing work on technological furtherance and sustainability, the main Smart Parking is one of the most adopted and fastest-growing Smart City Solutions across the world. Airports, universities, shopping centers, and city garages are just a few entities that have begun to realize the significant benefits of automated parking technology. The ability to connect, analyze and automate data gathered from devices, powered by and described as the Internet of Things, is what makes smart parking possible. Smart Parking involves the use of low-cost sensors, real-time data, and applications that allow users to monitor available and unavailable parking spots. The goal is to automate and decrease time spent manually searching for the optimal parking floor, spot, and even lot. Some solutions will encompass a complete suite of services such as online payments, parking time notifications, and even car searching functionalities for very large lots. A parking solution can greatly benefit both the user and the lot owner. Here are some of the top benefits:

Technical Details of Final Deliverable

The technical details of the project are as follows:

Park device we are able to supply an awesome experience to android application react native mobile app framework and Web framework PHP through admin panel security, IR sensor, user slot booking display LCD raspberry pi screen number plate pan-code after admin approval same database RFID and pi camera, dashboard area allowed in case, withinside the enterprise hub any premises allowed business promises the technical problem fixing to contain clean vehicle parking slots to hardware user minimum cost. Language usage PHP/React native and phyton, smart uses in smart application devices. Deployments of both cloud servers and IoT, cyber security for this parking cloud-based services must address in our future scope is initiative.

The technical details of the project are as follows:

Park device we are able to supply an awesome experience to android application react native mobile app framework and Web framework PHP through admin panel security, IR sensor, user slot booking display LCD raspberry pi screen number plate pan-code after admin approval same database RFID and pi camera, dashboard area allowed in case, withinside the enterprise hub any premises allowed business promises the technical problem fixing to contain clean vehicle parking slots to hardware user minimum cost. Language usage PHP/React native and phyton, smart uses in smart application devices. Deployments of both cloud servers and IoT, cyber security for this parking cloud-based services must address in our future scope is initiative.

Final Deliverable of the Project HW/SW integrated systemCore Industry ManufacturingOther Industries IT Core Technology Internet of Things (IoT)Other Technologies RoboticsSustainable Development Goals Quality EducationRequired Resources
Elapsed time in (days or weeks or month or quarter) since start of the project Milestone Deliverable
Month 1Literature review Literature content
Month 2Literature review Literature readings
Month 3Feasibility analysis Feasibility report
Month 4Project design Flow chart
Month 5Data collection Data
Month 6Model testing Initial model
Month 7Model testing Adjusting proper model
Month 8Model testing Testing final model
Month 9Parameter adjustments Setting according to need
Month 10Report Compilation Report submission

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