Real-time Communication Of Flight Simulator Data Using Multicasting

This research uses UDP multicasting to synchronize X-Plane data with Arduino-UNO for seamless multi-screen viewing in VR flight simulations.

Real-time Communication Of Flight Simulator Data Using Multicasting

The use of real-time data communication and reporting in the Xplane-11 flight  simulation environment. The research focuses on the use of User Data Protocol for data transfer to provide  seamless communication between the platform and the simulator. The main goal is to extend the flight chat  time, improve data visualization on multiple screens, and enable data stream synchronization between  Xplane-11 and MATLAB/Simulink. The paper outlines the integration process between these platforms,  discusses the benefits of instant messaging, and compares Xplane-11 with other flight simulators such as  Flight Gear. Through this research, we aim to create a robust simulation data transfer framework that  increases the accuracy and precision of the virtual flight experience.

Group Members

Dr. Syed Muhammad Tahir Zaidi

Role: Head
Area: Digital Signal Processing, Communication Systems

Engr. Muhammad Ibrar

Role: Associate Head
Area: Communication Systems, Control System

Engr. Usman Ahmad

Role: Research Assistant
Area: Aerospace, Aerodynamics

Engr. Rida Javaid

Role: Research Assistant
Area: Avionics Suits, Data Communication

Latest Projects

Hardware Interface With Flight Simulator For Motion Via Real-time Communication
Real-time Communication Of Flight Simulator Data Using Multicasting
Real-time Communication Of Flight Simulator Data Using Multicasting

Explore the latest publications detailing breakthroughs and insights from our researcher.

  1. Real-Time Internet-based Technology Applying Machine Learning Algorithm to Identify Airplane. (Journal of Innovative Computing and Emerging Technologies)
  2. Real Time Flight Simulator Data Communication for Co-Simulation. (Kurdish Studies journal)
  3. Real-Time Data Communication Via Broadcasting in Xplane-11. (Journal of Jilin University (Engineering and Technology Edition))
  4. Real-Time Sensory Synchronization in VR Flight Simulators to Mitigate Simulator sickness. (International Journal of Electrical and Electronics Engineering(Accepted)
  5. Advancing Wearables: Dual-Band Antenna Design with High Permittivity Miniaturization using Natural Substrate. “2024 International Conference on Engineering and Emerging Technologies (ICEET)(Accepted)”

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