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Optimization of AEBS for Heavy Goods Vehicles Incorporating Driver’s Control and 3D Visibility of Vulnerable Road Users

  • Xi Zhang
  • , Binglei Xie
  • , Mingtao Song*
  • *Corresponding author for this work
  • School of Architecture, Harbin Institute of Technology Shenzhen
  • Shenzhen Technology Institute of Urban Public Safety

Research output: Contribution to journalArticlepeer-review

Abstract

Featured Application: Improving traffic safety of heavy goods vehicles. While an advanced emergency braking system (AEBS) significantly improves the safety of a heavy goods vehicle (HGV), current implementations face limitations including inadequate scenario coverage for vulnerable road users (VRUs), overriding driver control and limited human–machine collaboration mechanisms, and an insufficient consideration of blind spot challenges in HGVs. To improve the adaptability of the AEBS for HGVs, this study proposes and validates a novel 2D AEBS control algorithm incorporating driver’s control and 3D visibility of VRUs. The proposed algorithm is designed to firstly identify the motion state scenarios based on the spatial relationship between the HGV and VRU. Then, based on the scenario classification result, the proposed algorithm determines whether the HGV needs to brake in the current scenario according to the 2D time to collision for both entities to reach the potential collision area while maintaining their current speeds. Finally, for situations requiring braking, it evaluates whether safety can be ensured under three conditions: the ego vehicle in free driving, the ego vehicle under driver-controlled braking (considering the 3D visibility of the VRU), and the ego vehicle under 2D AEBS-controlled braking. According to the test results, the proposed algorithm can deal with the VRU crossing scenario and leverage the driver’s control capabilities while utilizing AEBS as a safety net function.

Original languageEnglish
Article number516
JournalApplied Sciences (Switzerland)
Volume16
Issue number1
DOIs
StatePublished - Jan 2026
Externally publishedYes

Keywords

  • 2D time to collision
  • 3D blind spots
  • AEBS
  • heavy goods vehicle

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