Scene Barrier Effects on Vehicle Deceleration Rate during Primary Accident in a Suburban Area

M. Rani, S. A. Abu Bakar, M. Hashim, A. Harun, Z. Razlan, W. K. Wan, I. Zunaidi, I. Ibrahim, M. Afendi, N. Efi, Y. Ahmad, M. Dalib, S.S. Mat Rudin
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Abstract

This study uses a simulation of primary accident to investigate the scene barrier effects on vehicle deceleration rate in the suburban area to assess driver behaviour. Several conditions were designed and experimented to determine the capability of scene barrier, which included free flow traffic without an accident, an accident without scene barrier and an accident with scene barrier. The vehicle deceleration rate was investigated by collecting speed-time data in normal traffic zone and rubbernecking zone. Results found that the average vehicle deceleration rate reached as high as - 1.93 km/h/s in rubbernecking zone compared to normal traffic zone (as high as - 0.49 km/h/s) especially when an accident was simulated without the scene barrier. Introduction of scene barrier during the simulated accident improved traffic flow and reduced rubbernecking phenomena by improving the average vehicle deceleration rate in rubbernecking zone by up to 43.0 %. However, sudden deceleration cannot be totally eliminated during the simulated accident with the scene barrier due to driver behaviour. For optimization of braking time during a primary accident, a study of the algorithm of Autonomous Emergency Braking (AEB) system is necessary.
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场景屏障对城郊初事故车辆减速率的影响
本研究通过对原发事故的模拟研究,探讨了场景屏障对郊区车辆减速率的影响,以评估驾驶员行为。设计并试验了无事故自由流交通、无事故现场和有事故现场三种场景屏障能力条件。通过采集正常交通区域和绕行区域的速度-时间数据,对车辆的减速率进行了研究。结果发现,与正常交通区(- 0.49 km/h/s)相比,在没有现场护栏的情况下模拟事故时,“抢胶区”的车辆平均减速率高达- 1.93 km/h/s。在模拟事故中引入场景屏障改善了交通流量,减少了行人围观现象,使行人围观区车辆平均减速率提高了43.0%。然而,由于驾驶员行为的原因,在有现场障碍物的模拟事故中,不能完全消除突然减速现象。为了优化初次事故时的制动时间,有必要研究自动紧急制动(AEB)系统的算法。
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