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February 21, 2026Sensors0 citationsOpen Access

Closing Sim2Real Gaps: A Versatile Development and Validation Platform for Autonomous Driving Stacks

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JAJ. Felipe ArangoRGRodrigo Gutiérrez-MorenoPRPedro Antonio Alonso Revenga

Key Points

  • The aim is to develop a methodology that effectively closes gaps between simulated and real-world performance of autonomous driving systems.
  • Proposed the Methodology for Closing Reality and Performance Gaps (MCRPG)
  • Implemented a three-stage validation process: Digital Twin, Parallel Execution, and Real-World
  • Used ROS-based modular autonomous driving stacks and integrated with CARLA simulator
  • Established a two-level metric suite for performance and alignment evaluation
  • Demonstrated convergence between simulated and real behaviors in urban scenarios
  • Showed improved consistency in performance across different experimental stages
  • Validated the usability of the open-source Development and Validation Platform

Abstract

The successful transfer of autonomous driving stacks (ADS) from simulation to the real world faces two main challenges: the Reality Gap (RG)—mismatches between simulated and real behaviors—and the Performance Gap (PG)—differences between expected and achieved performance across domains. We propose a Methodology for Closing Reality and Performance Gaps (MCRPG), a structured and iterative approach that jointly reduces RG and PG through parameter tuning, cross-domain metrics, and staged validation. MCRPG comprises three stages—Digital Twin, Parallel Execution, and Real-World—to progressively align ADS behavior and performance. To ground and validate the method, we present an open-source, cost-effective Development and Validation Platform (DVP) that integrates an ROS-based modular ADS with the CARLA simulator and a custom autonomous electric vehicle. We also introduce a two-level metric suite: (i) Reality Alignment via Maximum Normalized Cross-Correlation (MNCC) over multi-modal signals (e.g., ego kinematics, detections), and (ii) Ego-Vehicle Performance covering safety, comfort, and driving efficiency. Experiments in an urban scenario show convergence between simulated and real behavior and increasingly consistent performance across stages. Overall, MCRPG and DVP provide a replicable framework for robust, scalable, and accessible Sim2Real research in autonomous navigation techniques.

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Cite This Study

Arango et al. (2026) studied this question.

synapsesocial.com/papers/69994c4b873532290d020a54https://doi.org/10.3390/s26041338
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