ATR72-600
"A high-fidelity Unity-powered digital twin translating flight data recorder telemetry logs into a fully synchronized 3D cockpit reconstruction."
Our telemetry integration framework reads flight data recorder (FDR) parameter logs, plotting precise aerodynamics, landing gear states, control surface kinematics, and multi-system engine diagnostics with absolute real-time reliability.

Project Specifications
Reconstructing flight mechanics, line by line.
Aviation analysis frequently struggles with the translation of long tables of numerical data from the Flight Data Recorder (FDR) into actionable, spatial visualizations. Our simulator solves this by mapping actual raw blackbox inputs directly to an exact digital twin of the ATR72-600.
Built in Unity, the software processes 3D parameters including pitch, roll, heading, control column deflection, landing gear extension, flaps, and engine outputs. The simulation reconstructs past flight events in complete spatial clarity, enabling accident investigators, flight trainers, and engineers to walk through a flight step-by-step with absolute geometric accuracy.
FDR Ingestion & Kinematic Processing
Our architecture processes recorded flight data parameters, mapping parsed timeseries logs directly into real-time physical behaviors and cockpit state variables.
01 / FDR Telemetry Ingestion
Ingests decoded flight parameter spreadsheets and CSV timeseries logs containing critical telemetry parameters. The pipeline aligns recorded timestamp samples with the simulator time steps.
02 / Kinematic Calibration
Converts raw voltage values and digital offsets into standard aerodynamic measurements. The pipeline smooths sensor anomalies and aligns pitch, roll, and lateral acceleration indices.
03 / Unity Digital Twin Render
Feeds synchronized streams into Unity. Controls 3D cockpit instruments, indicator lights, landing gear deployments, flaps, and all virtual control surface rotations instantly.
Precision-aligned flight variables
The system focuses extensively on Flight Data Recorder (FDR) parameters and turboprop engine data values, reconstructing cockpit warning logic and surface controls with absolute alignment.
Aerodynamic equations and engine models are cross-referenced with manufacturer performance guides to guarantee flight path reconstruction tolerances.
Engine Performance Data
Continuous measurement of turboprop mechanics. Monitored values include:
- Left & Right Engine Torque (%)
- Propeller Speeds (Np %)
- Interstage Turbine Temperature (ITT °C)
- Fuel Flow rates (FF kg/h)
Avionics & Flight Attitude
Tracks dynamic orientations and flight state vectors. Core readings:
- Pitch, Roll, and Yaw Attitude Angles
- Compass Heading & Drift factors
- Indicated Airspeed (IAS) • Altitude
- Vertical Velocities & Lateral G-Forces
Control Surface Kinematics
Correlates cockpit control column inputs with surface deflections:
- Control Column Pitch & Roll Positions
- Rudder Pedal displacements
- Aileron, Elevator, & Rudder Angles
- Flap, Slat, and Spoiler positions
Systems & Warning Flags
Records flight system states and emergency triggers:
- Landing Gear extension state
- Autopilot engagement registers
- Master Caution & Engine warning signals
- Pneumatic & Hydraulic circuit flags
Rebuilding spatial trajectories
Below is an altitude profile visualization demonstrating how our systems parse continuous coordinate matrices from FDR sensors, transforming discrete data logs into smooth 3D flight trajectories inside the Unity engine.
High-fidelity digital twin solutions
Examine how our system interfaces with Unity to reconstruct commercial flight events with absolute, verifiable telemetry fidelity.