| Literature DB >> 28595973 |
Yang Li1, Yang Zheng2, Jianqiang Wang3, Kenji Kodaka4, Keqiang Li1.
Abstract
Crash probability estimation is an important method to predict the potential reduction of crash probability contributed by forward collision avoidance technologies (FCATs). In this study, we propose a practical approach to estimate crash probability, which combines a field operational test and numerical simulations of a typical rear-end crash model. To consider driver hazard perception characteristics, we define a novel hazard perception measure, called as driver risk response time, by considering both time-to-collision (TTC) and driver braking response to impending collision risk in a near-crash scenario. Also, we establish a driving database under mixed Chinese traffic conditions based on a CMBS (Collision Mitigation Braking Systems)-equipped vehicle. Applying the crash probability estimation in this database, we estimate the potential decrease in crash probability owing to use of CMBS. A comparison of the results with CMBS on and off shows a 13.7% reduction of crash probability in a typical rear-end near-crash scenario with a one-second delay of driver's braking response. These results indicate that CMBS is positive in collision prevention, especially in the case of inattentive drivers or ole drivers. The proposed crash probability estimation offers a practical way for evaluating the safety benefits in the design and testing of FCATs.Entities:
Keywords: Crash probability; Driver hazard perception; Field operational test; Numerical simulation; Rear-end model
Mesh:
Year: 2017 PMID: 28595973 DOI: 10.1016/j.aap.2017.05.009
Source DB: PubMed Journal: Accid Anal Prev ISSN: 0001-4575