/ZalaZONE-automotive-proving-ground-virtual-simulation-models

Models of the ZalaZONE automotive proving ground in different file formats for simulation software (IPG CarMaker, PreScan, VTD Vires, SUMO, Unity 3D)

MIT LicenseMIT

Contents

OpenDrive

Files Version Date
ZalaZONE_SmartCityZone_laser.xodr 0.1 01.16.2020.
ZalaZONE_SmartCityZone_plan.xodr 0.1 01.16.2020.
ZalaZONE_full.xodr 0.2 02.26.2020.

Laser scanned and blueprint-based models of the Smart City Zone of the ZalaZONE test track (Z-city) in OpenDrive (.xodr) format. The full test track model was created manually in ROD (VIRES own road-network designer software) based on the original plans. There are minor deviations from the constructed test track.

Acknowledgements

Baseline OpenDRIVE source files, as well as airborne scanning based LIDAR pointclouds and textured terrain meshes were provided by Baukoord-Europa kft. (baukoord.hu/en/).


IPG CarMaker

Files Version Date
ZalaZONE_full_v01.rd5 (zipped) 0.1 01.16.2020.

All of the modules based on the original plans and are created manually in Scenario/Road editor (IPG CARMAKER's own road-network designer software). There are minor deviations from the constructed test track.


PreScan

Files Version Date
ZalaZONE_braking_platform_v01.pex 0.1 01.16.2020.
ZalaZONE_dynamic_platform_v01.pex 0.1 01.16.2020.
ZalaZONE_handling_course_v01.pex 0.1 01.16.2020.
ZalaZONE_high-speed_oval_v01.pex 0.1 01.16.2020.
ZalaZONE_rural_road_highway_motorway_v01.pex 0.1 01.16.2020.
ZalaZONE_braking_platform_v01.pex 0.1 01.16.2020.
ZalaZONE_smart_city_v01.pex 0.1 01.16.2020.

All of the modules based on the original plans and are created manually in Prescan's GUI. There are minor deviations from the constructed test track.


Vires VTD

Files Version Date
ZalaZONE_full.tdo 0.2 02.26.2020.
ZalaZONE_full.xodr 0.2 02.26.2020.

The full test track model was created manually in ROD (VIRES own road-network designer software) based on the original plans.The provided file is in .tdo which is the working file of the ROD. For the scenario editor .xodr and .osgb are also provided. There are minor deviations from the constructed test track.


Unity 3D

Files Version Date
ZalaZONE_full_v01.fbx (compressed, split) 0.1 01.16.2020.

Based on laser scanning and orthophotos.

Acknowledgements

Baseline OpenDRIVE source files, as well as airborne scanning based LIDAR pointclouds and textured terrain meshes were provided by Baukoord-Europa kft. (baukoord.hu/en/).


Unreal Engine

Files Version Date
ZalaZONE_full_v01.fbx (compressed, split) 0.1 04.21.2020.

Based on laser scanning and orthophotos.

Acknowledgements

Baseline OpenDRIVE source files, as well as airborne scanning based LIDAR pointclouds and textured terrain meshes were provided by Baukoord-Europa kft. (baukoord.hu/en/).


SUMO

Files Version Date
ZalaZONE_SmartCityZone_laser.net.xml 0.1 01.16.2020.
ZalaZONE_SmartCityZone_laser.sumocfg 0.1 01.16.2020.
ZalaZONE_SmartCityZone_plan.net.xml 0.1 01.16.2020.
ZalaZONE_SmartCityZone_plan.sumocfg 0.1 01.16.2020.
ZalaZONE_SmartCityZone_plan_partial.net.xml 0.1 01.16.2020.
ZalaZONE_SmartCityZone_plan_partial.rou.xml 0.1 01.16.2020.
ZalaZONE_SmartCityZone_plan_partial.sumocfg 0.1 01.16.2020.

Laser scanned and blueprint-based models of the Smart City Zone of the ZalaZONE test track in SUMO network file (.net.xml) format. There are minor deviations from the constructed test track. The laser scanned SUMO project file is limited as it only contains the already constructed part of the Smart City Zone (cca. 30%).

Acknowledgements

Baseline OpenDRIVE source files, as well as airborne scanning based LIDAR pointclouds and textured terrain meshes were provided by Baukoord-Europa kft. (baukoord.hu/en/).


References

If you have found the models useful in your work, please, cite one of our papers in your publication, e.g.

Tettamanti T., Szalai M., Vass S. and Tihanyi V. (2018) "Vehicle-In-the-Loop Test Environment for Autonomous Driving with Microscopic Traffic Simulation", In 2018 IEEE International Conference on Vehicular Electronics and Safety (ICVES). Madrid, Spain, Sept, 2018. , pp. 1-6. URL: https://ieeexplore.ieee.org/document/8519486

Horváth M.T., Lu Q., Tettamanti T., Török Á. and Szalay Zs. (2019) "Vehicle-In-The-Loop (VIL) and Scenario-In-The-Loop (SCIL) Automotive Simulation Concepts from the Perspectives of Traffic Simulation and Traffic Control", Transport and Telecommunication Journal. Vol. 2(20), pp. 153-161. URL: https://content.sciendo.com/view/journals/ttj/20/2/article-p153.xml

Németh H., Háry A., Szalay Zs., Tihanyi V., Tóth B. (2019) "Proving Ground Test Scenarios in Mixed Virtual and Real Environment for Highly Automated Driving", In: Proff H. (eds) Mobilität in Zeiten der Veränderung. Springer Gabler, Wiesbaden. pp 199-210. URL: https://link.springer.com/chapter/10.1007/978-3-658-26107-8_15

Szalay, Zs., Hamar, Z. and Nyerges, Á. (2019) "Novel design concept for an automotive proving ground supporting multilevel CAV development", International Journal of Vehicle Design, Vol. 80, No. 1, pp.1–22.


General Acknowledgement

The project has been supported by the European Union, co-financed by the European Social Fund. EFOP-3.6.2-16-2017-00002.