Author(s)

Vishal Bhausaheb Walhekar

  • Manuscript ID: 140754
  • Volume: 2
  • Issue: 6
  • Pages: 3169–3178

Subject Area: Engineering

Abstract

The Online Oxygen Supply Management System is a web-based application designed to manage and streamline the supply, distribution, and monitoring of oxygen cylinders for hospitals, healthcare centers, industries, and individual consumers. During medical emergencies and periods of high demand, the availability and timely delivery of oxygen become critical. Traditional oxygen supply management methods often involve manual record keeping, delayed communication, inventory inaccuracies, and inefficient distribution processes. The proposed system aims to overcome these challenges by providing a centralized digital platform for oxygen inventory management, order processing, supplier coordination, and customer service.
The system enables registered users to search for available oxygen cylinders, place online orders, track delivery status, and make secure payments through an integrated interface. Suppliers and administrators can monitor stock levels, update cylinder availability, manage customer requests, and generate reports for effective decision-making. Real-time inventory tracking helps prevent shortages and ensures efficient allocation of oxygen resources. The system also maintains detailed records of customers, suppliers, orders, deliveries, and payment transactions, reducing paperwork and improving operational efficiency.
The project is developed using modern web technologies with a database management system that ensures secure storage and retrieval of information. Features such as user authentication, order history, notification services, and automated inventory updates enhance system reliability and user convenience. By digitizing the oxygen supply chain, the system minimizes human errors, improves transparency, and enables faster response during emergencies.
Overall, the Online Oxygen Supply Management System provides an efficient, reliable, and scalable solution for managing oxygen distribution. It supports better resource utilization, timely delivery, and effective communication between suppliers and consumers, ultimately contributing to improved healthcare services and emergency preparedness.

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