Introduction of AURELION Driver Monitoring to simulate driver tiredness or distraction for the testing of driver and occupant monitoring safety systems. Additional features for OpenSCENARIO simulations, sensor models, and WebAPI. UI usability and updates.

AURELION 26.2 focuses on introducing AURELION Driver Monitoring. A range of features has been added to the AURELION simulation tool chain to simulate the movements and attention of the vehicle driver. These features are used, for example, to detect tiredness, distraction, or impairment during the testing of vehicle driver and occupant monitoring safety systems. They meet the requirements of the Society of Automotive Engineers (SAE) for levels 2 and 3 of advanced driver assistance systems (ADAS).

A number of improvements are made to advance the support for OpenSCENARIO simulations in addition to a range of new sensor model features and user interface improvements. AURELION is also now supported on specific NVIDIA Blackwell graphics cards. 

Supported dSPACE Releases
  • RLS 24-A
  • RLS 24-B
  • RLS 25-A
  • RLS 25-B
  • RLS 26-A

Main Features

  • AURELION Driver Monitoring, including the following features:
    • Integration of a physics-based infrared (IR) camera sensor for realistic and accurate sensor data generation using a dedicated license.
    • Animated human characters that can be seated as vehicle drivers for driver monitoring simulations.
    • Characters with realistic movements, facial accessories, and animations, for example, focused, sleeping, or talking. 
    • Default vehicles configured with driver gaze point locations.
    • Documented workflow to start using the demo driver monitoring scenarios and configuration files.
    • API extensions enabling fully automated driver monitoring simulation workflows.
  • Updates to AURELION sensor models
    • Adds rolling shutter simulation for light sources, increasing camera realism in dynamic lighting scenarios.
    • Improved radar fading behavior for increased realism and more accurate sensor simulation.
    • Improved lidar fidelity with a new signal-to-noise ratio (SNR)-based distance noise model.
    • Added a new ultrasonic sensor postprocessing demo to simplify evaluation and integration workflows.
  • Update to 3D content in AURELION
    • Extended ISA coverage with support for Spanish traffic signs. 
  • OpenSCENARIO new features including the following:
    • Usability improvements and feature extensions in OpenSCENARIO workflows.
    • Support for the "Biking" lane type with red asphalt.
    • Use of custom asset GLB files.
  • User interface, automation and minor updates including:
    • Display information on the synchronized system and scenario.
    • Display information on the active ModelDesk road and scenario
    • Display of the GPU and display screen connected to the AURELION instance.
    • Improved process for selecting and editing sensor configuration files and additional files.
    • Migration of the remaining functions to the new AURELION Manager Web API.
    • Performance improvements for synchronizations with custom GLB files.

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