CoSim: A Co-Simulation Framework for Testing Autonomous Vehicles in Adverse Operating Conditions

被引:0
|
作者
Sural, Shounak [1 ]
Su, Gregory [1 ]
Sahu, Nishad [1 ]
Naren [1 ]
Rajkumar, Ragunathan [1 ]
机构
[1] Carnegie Mellon Univ, Elect & Comp Engn, Pittsburgh, PA 15213 USA
关键词
D O I
10.1109/ITSC57777.2023.10422355
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Autonomous driving has immense potential to improve the safety of vehicles and pedestrians. However, safety assurances for Autonomous Vehicles (AVs) are lacking under adverse weather conditions and in unseen road environments. Unfortunately, real-world testing of AVs in such situations can be unsafe and even infeasible. Reproducing any failure cases with identical external operating conditions is practically impossible. Specifically, situations like heavy rain, low-lighting conditions, and work zones require considerable time and effort. To address this problem, we propose CoSim, a co-simulation architecture for testing of AV perception in adverse operating conditions. We specifically use the general framework of CoSim to interface CMU's autonomous software stack called CADRE with an open-source simulator named CARLA. CoSim is designed such that the AV software stack interacts with realistic simulated driving scenarios as in the real world. Using CoSim, we mimic the use of cameras and LIDARs for the real-time detection of road objects and work zones under adverse operating conditions. CoSim supports time virtualization on both CADRE and CARLA to accommodate heavy processing demands. Using CoSim, we evaluate the performance of our AV in adverse operating conditions, dramatically reducing the need for expensive real-world testing.
引用
收藏
页码:2098 / 2105
页数:8
相关论文
共 50 条
  • [31] Development of a Co-Simulation Framework for Systematic Generation of Scenarios for Testing and Validation of Automated Driving Systems
    Nalic, Demin
    Eichberger, Arno
    Hanzl, Georg
    Fellendorf, Martin
    Rogic, Branko
    2019 IEEE INTELLIGENT TRANSPORTATION SYSTEMS CONFERENCE (ITSC), 2019, : 1895 - 1901
  • [32] Advanced co-simulation HMI Environment For Fully Electric Vehicles
    Sixto, Virginia
    Lopez, Pablo
    Sanchez, Francisco
    Jones, Stephen
    Kural, Emre
    Parrilla, Alejandro Ferreira
    LeRhun, Franck
    2014 IEEE INTERNATIONAL ELECTRIC VEHICLE CONFERENCE (IEVC), 2014,
  • [33] A Framework for the Co-simulation of Engine Controls and Task Scheduling
    Pazzaglia, Paolo
    Di Natale, Marco
    Buttazzo, Giorgio
    Secchiari, Matteo
    SOFTWARE ENGINEERING AND FORMAL METHODS, SEFM 2017, 2018, 10729 : 438 - 452
  • [34] Co-Simulation Framework for Network Attack Generation and Monitoring
    Bel, Oceane
    Kim, Joonseok
    Hofer, William J.
    Maharjan, Manisha
    Hyder, Burhan
    Purohit, Sumit
    Niddodi, Shwetha
    IEEE ACCESS, 2024, 12 : 142227 - 142240
  • [35] A framework for fast hardware-software co-simulation
    Hoffmann, A
    Kogel, T
    Meyr, H
    DESIGN, AUTOMATION AND TEST IN EUROPE, CONFERENCE AND EXHIBITION 2001, PROCEEDINGS, 2001, : 760 - 764
  • [36] Enhancing the Realism of Autonomous Driving Simulation with Real-time Co-simulation
    Chen, Qiwei
    Wang, Tiexin
    Lu, Chengjie
    Yue, Tao
    Ali, Shaukat
    ACM/IEEE 25TH INTERNATIONAL CONFERENCE ON MODEL DRIVEN ENGINEERING LANGUAGES AND SYSTEMS, MODELS 2022 COMPANION, 2022, : 659 - 667
  • [37] A Framework for the Analysis of UAV Strategies using Co-simulation
    Barros, Jose de Sousa
    Oliveira, Thyago
    Nigam, Vivek
    Brito, Alisson V.
    2016 VI BRAZILIAN SYMPOSIUM ON COMPUTING SYSTEMS ENGINEERING (SBESC 2016), 2016, : 9 - 15
  • [38] Poster: Sim-ATAV: Simulation-Based Adversarial Testing Framework for Autonomous Vehicles
    Tuncali, Cumhur Erkan
    Fainekos, Georgios
    Ito, Hisahiro
    Kapinski, James
    HSCC 2018: PROCEEDINGS OF THE 21ST INTERNATIONAL CONFERENCE ON HYBRID SYSTEMS: COMPUTATION AND CONTROL (PART OF CPS WEEK), 2018, : 283 - 284
  • [39] A Modular Co-Simulation Platform for Comparing Flexibility Solutions in District Heating Under Variable Operating Conditions
    Mazzarino, Pietro Rando
    Capone, Martina
    Guelpa, Elisa
    Bottaccioli, Lorenzo
    Verda, Vittorio
    Patti, Edoardo
    IEEE TRANSACTIONS ON SUSTAINABLE COMPUTING, 2025, 10 (02): : 408 - 417
  • [40] A Co-Simulation Framework for Power Systems and Communication Networks
    Zhong, Welin
    Liu, Muyang
    Milano, Federico
    2019 IEEE MILAN POWERTECH, 2019,