On-demand fuel delivery system using Flutter providing seamless user experience with real-time tracking, secure transactions, and efficient service management features | IJCSE Volume 10 β Issue 3 | IJCSE-V10I3P22
IJCSE
International Journal of Computer Science Engineering Techniques
ISSN 2455-135X Β· Peer-Reviewed Β· Open Access
π Volume 10, Issue 3
π
June 17, 2026
π Pages 158β161
π ID: IJCSE-V10I3P22
Table of Contents
ToggleOn-demand fuel delivery system using Flutter providing seamless user experience with real-time tracking, secure transactions, and efficient service management features
Author(s)
K. Ramakrishna, Archana Baburao Patil, SK Althaf Hussain Basha
Abstract
The Online Fuel Delivery System is a modern digital solution that enables customers to receive fuel directly at their location using a mobile or web application. It addresses common challenges such as unexpected fuel shortages, long travel distances to fuel stations, and time constraints. Users can easily select the fuel type, quantity, and delivery location through GPS integration. Once an order is placed, the system connects with nearby authorized fuel providers to ensure quick and safe delivery.The platform includes features such as user registration, secure online payments, real-time order tracking, and instant notifications. It ensures transparency and keeps users informed throughout the process. For service providers, the system helps manage orders, customer data, and inventory efficiently. Overall, this system improves convenience, saves time, enhances accessibility, and provides a reliable solution for modern fuel delivery needs
Keywords
Flutter Application, Real-time Tracking, Secure Transactions, GPS Integration, Service Management, Fuel Providers, Mobile/Web Platform
Conclusion
The Fuel Delivery Application developed using Flutter aims to offer a simple and efficient solution for users to access fuel services anytime and from any location. This project highlights how modern mobile app technologies can streamline daily activities and enhance overall user convenience. With Flutter, the app delivers a fast, responsive, and easy-to-use interface that performs well across multiple devices. Users can conveniently place fuel orders, monitor delivery status, and complete secure transactions through a single platform.
At the same time, it enables fuel providers to handle requests more effectively and optimize their delivery operations. This minimizes the need for customers to visit fuel stations, saving both time and effort, particularly during urgent situations.
In conclusion, the project demonstrates the potential of mobile applications in improving service reach and operational performance in the fuel delivery industry. With future enhancements like live GPS tracking, advanced payment options, and stronger security measures, the application can evolve into a dependable and widely adopted service solution.
Future Enhancement
Live GPS Monitoring β Enables users to view the real-time location of the delivery vehicle and get an accurate estimated time of arrival. Various Payment Methods β Supports multiple payment options including UPI, debit/credit cards, net banking, and digital wallets for user convenience.
Instant Notifications β Provides timely alerts for order confirmation, delivery progress, and special offers through push notifications. Enhanced Security Measures β Incorporates features like OTP authentication, secure login systems, and encrypted payment processing to ensure data safety.
Administrative Control Panel β Offers a dedicated dashboard for administrators to oversee users, manage orders, monitor delivery personnel, and track fuel stock. Feedback and Rating Feature β Allows customers to share their experiences, rate services, and give suggestions to improve overall service quality.
At the same time, it enables fuel providers to handle requests more effectively and optimize their delivery operations. This minimizes the need for customers to visit fuel stations, saving both time and effort, particularly during urgent situations.
In conclusion, the project demonstrates the potential of mobile applications in improving service reach and operational performance in the fuel delivery industry. With future enhancements like live GPS tracking, advanced payment options, and stronger security measures, the application can evolve into a dependable and widely adopted service solution.
Future Enhancement
Live GPS Monitoring β Enables users to view the real-time location of the delivery vehicle and get an accurate estimated time of arrival. Various Payment Methods β Supports multiple payment options including UPI, debit/credit cards, net banking, and digital wallets for user convenience.
Instant Notifications β Provides timely alerts for order confirmation, delivery progress, and special offers through push notifications. Enhanced Security Measures β Incorporates features like OTP authentication, secure login systems, and encrypted payment processing to ensure data safety.
Administrative Control Panel β Offers a dedicated dashboard for administrators to oversee users, manage orders, monitor delivery personnel, and track fuel stock. Feedback and Rating Feature β Allows customers to share their experiences, rate services, and give suggestions to improve overall service quality.
References
[1]. A. Sharma, R. Gupta,βDesign and Development of an Online Fuel Delivery System,β International Journal of Engineering Research & Technology (IJERT),vol. 9, no. 6, pp. 123β126, 2020.
[2]. P. Kumar, S. Singh,βSmart Fuel Delivery System Using Mobile Application,β International Journal of Innovative Technology and Exploring Engineering (IJITEE),vol. 8, no. 10, pp. 456β460, 2019.
[3]. M. Reddy, K. Rao,βIoT-Based Fuel Monitoring and Delivery System,βInternational Journal of Computer Applications,vol. 177, no. 39, pp. 15β19, 2021.
[4]. S. Patel, D. Mehta,βFuel Delivery System Using GPS and Mobile Technology ,βInternational Conference on Smart Computing and Communication (ICSCC),pp. 210β214, 2020.
[5]. N. Verma, A. Mishra,βSecure Online Payment and Tracking System for Fuel Delivery Services,βInternational Journal of Advanced Research in Computer Science,vol. 10, no. 3, pp. 98β102, 2019.
[6]. R. Karthik, V. Kumar,βOn-Demand Fuel Delivery Application Using Flutter Framework,βInternational Journal of Scientific Research in Computer Science Engineering and Information Technology,vol. 7, no. 4, pp. 234β238, 2022.
[7]. J. Lee, H. Kim,βMobile-Based Logistics and Delivery Tracking System Using GPS,β
IEEE Access,vol. 8, pp. 112233β112245, 2020.
[8]. T. Nguyen, P. Tran,βE-Commerce and On-Demand Service Applications: A Case Study of Fuel Delivery,βJournal of Information Systems Engineering,vol. 6, no. 2, pp. 45β52, 2021
[2]. P. Kumar, S. Singh,βSmart Fuel Delivery System Using Mobile Application,β International Journal of Innovative Technology and Exploring Engineering (IJITEE),vol. 8, no. 10, pp. 456β460, 2019.
[3]. M. Reddy, K. Rao,βIoT-Based Fuel Monitoring and Delivery System,βInternational Journal of Computer Applications,vol. 177, no. 39, pp. 15β19, 2021.
[4]. S. Patel, D. Mehta,βFuel Delivery System Using GPS and Mobile Technology ,βInternational Conference on Smart Computing and Communication (ICSCC),pp. 210β214, 2020.
[5]. N. Verma, A. Mishra,βSecure Online Payment and Tracking System for Fuel Delivery Services,βInternational Journal of Advanced Research in Computer Science,vol. 10, no. 3, pp. 98β102, 2019.
[6]. R. Karthik, V. Kumar,βOn-Demand Fuel Delivery Application Using Flutter Framework,βInternational Journal of Scientific Research in Computer Science Engineering and Information Technology,vol. 7, no. 4, pp. 234β238, 2022.
[7]. J. Lee, H. Kim,βMobile-Based Logistics and Delivery Tracking System Using GPS,β
IEEE Access,vol. 8, pp. 112233β112245, 2020.
[8]. T. Nguyen, P. Tran,βE-Commerce and On-Demand Service Applications: A Case Study of Fuel Delivery,βJournal of Information Systems Engineering,vol. 6, no. 2, pp. 45β52, 2021
π How to Cite This Paper
K. Ramakrishna, Archana Baburao Patil, SK Althaf Hussain Basha (2026). On-demand fuel delivery system using Flutter providing seamless user experience with real-time tracking, secure transactions, and efficient service management features. International Journal of Computer Science Engineering Techniques, 10(3), 158β161. ISSN: 2455-135X. DOI: https://doi.org/10.5281/zenodo.20738462




