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Customized Co-Simulation Environment for Autonomous Driving Algorithm Development and Evaluation

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arxiv 2306.00223 v1 pith:5JTPTPVW submitted 2023-05-31 cs.RO cs.SYeess.SY

classification cs.ROcs.SYeess.SY
keywords simulationenvironmentautonomousco-simulationalgorithmdevelopmentdrivingsensor
verification ladder T0 review T1 audit T2 compute T3 formal
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Increasing the implemented SAE level of autonomy in road vehicles requires extensive simulations and verifications in a realistic simulation environment before proving ground and public road testing. The level of detail in the simulation environment helps ensure the safety of a real-world implementation and reduces algorithm development cost by allowing developers to complete most of the validation in the simulation environment. Considering sensors like camera, LIDAR, radar, and V2X used in autonomous vehicles, it is essential to create a simulation environment that can provide these sensor simulations as realistically as possible. While sensor simulations are of crucial importance for perception algorithm development, the simulation environment will be incomplete for the simulation of holistic AV operation without being complemented by a realistic vehicle dynamic model and traffic cosimulation. Therefore, this paper investigates existing simulation environments, identifies use case scenarios, and creates a cosimulation environment to satisfy the simulation requirements for autonomous driving function development using the Carla simulator based on the Unreal game engine for the environment, Sumo or Vissim for traffic co-simulation, Carsim or Matlab, Simulink for vehicle dynamics co-simulation and Autoware or the author or user routines for autonomous driving algorithm co-simulation. As a result of this work, a model-based vehicle dynamics simulation with realistic sensor simulation and traffic simulation is presented. A sensor fusion methodology is implemented in the created simulation environment as a use case scenario. The results of this work will be a valuable resource for researchers who need a comprehensive co-simulation environment to develop connected and autonomous driving algorithms.

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Cited by 1 Pith paper

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  1. OpenCAMS: An Open-Source Connected and Automated Mobility Co-Simulation Platform for Advancing Next-Generation Intelligent Transportation Systems Research

    cs.SE 2025-07 conditional novelty 5.0 of 10

    OpenCAMS couples three simulators (SUMO, CARLA, OMNeT++) in a time-synchronized loop to enable integrated testing of connected and automated mobility scenarios.

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