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Emergency braking performance of motorcycle riders: skill identification in a real-life perception-action task designed for training purposes

机译:摩托车骑手的紧急制动性能:为训练目的而设计的真实感知动作任务中的技能识别

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Collisions with other vehicles represent the biggest threat to riders of powered-twowheeler (PTW), and while emergency braking is the evasive manoeuvre most frequently required in PTW riding, many riders fail to perform it adequately due to constraints on response time precipitated by failures of perception, cognition and control actions. Effective rider training methods are necessary for the development of braking proficiency in response to emergency situations.This study proposes a testing and training paradigm that exploits a closer similitude with the real-world scenario by maintaining the natural coupling of action (vehicle manoeuvring) and perception (higher order skill) that underlies any coordinated response to an emergency event. The aim of this study was to understand the behaviour of the riders in the execution of emergency braking coupled with visual perception of vehicle motion as a response to an imminent collision and determine parameters that can be used to identify differences in skill level.Participants performed emergency braking trials in a realistic and controlled scenario using a mock-up of an intersection conflict with a real car initiating a left turn manoeuvre across the path of a PTW approaching from the opposite direction (Left Turn Across Path/Opposite Directions). Analysis of the deceleration patterns recorded during 12 trials per participant revealed that performance of braking in response to an unpredicted moving hazard differs from that in a planned self-timed hard braking. In addition, our results indicate that PTW rider performance may be assessed in a reliable and objective way using the combination of vehicle kinematics and human performance measures. The study identified four categories of riders classified by their level skills. Finally, an important finding was the lack of correlation of both years of riding experience and self-assessed overall riding skill with an objective measure of emergency braking performance such as effective deceleration. The results of this study will support a new training approach and provide insights for future design of active safety systems. (C) 2019 Elsevier Ltd. All rights reserved.
机译:与其他车辆的碰撞是对电动双轮车(PTW)骑手的最大威胁,虽然紧急制动是PTW骑行中最经常需要的规避操作,但由于对驾驶员的故障造成的响应时间的限制,许多骑手未能充分执行该操作。感知,认知和控制行为。有效的骑手训练方法对于发展应对紧急情况的制动能力是必不可少的。本研究提出了一种测试和训练范例,该范例通过保持动作(车辆操纵)和感知的自然耦合来与现实世界场景更接近。 (高阶技能)是对紧急事件做出任何协调响应的基础。这项研究的目的是了解骑手在执行紧急制动以及视觉感知车辆运动以应对即将发生的碰撞时的行为,并确定可用于识别技能水平差异的参数。在现实和可控的情况下进行制动试验,使用与真实汽车发生的交叉路口冲突模型,在从相反方向接近的PTW路径(左转交叉路径/相反方向)上启动左转弯操纵。对每位参与者进行12次试验期间记录的减速模式的分析表明,对意外运动危险做出响应的制动性能与计划的自定时硬制动有所不同。此外,我们的结果表明,结合车辆运动学和人类绩效指标,可以以可靠和客观的方式评估PTW骑手的表现。该研究确定了四类按水平技能分类的骑手。最后,一个重要的发现是缺乏多年骑行经验和自我评估的总体骑行技能之间的关联性,而客观评估了诸如有效减速之类的紧急制动性能。这项研究的结果将支持一种新的培训方法,并为主动安全系统的未来设计提供见解。 (C)2019 Elsevier Ltd.保留所有权利。

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