...
首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Front steering design guidelines formulation for e-scooters considering the influence of sitting and standing riders on self-stability and safety performance
【24h】

Front steering design guidelines formulation for e-scooters considering the influence of sitting and standing riders on self-stability and safety performance

机译:前导设计指南,用于考虑坐骑和站立者对自稳定性和安全性能的影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

E-scooters are a recent trend and are viewed as a sustainable solution to ease the first and last mile problem in modern transportation. However, an alarming rate of accidents, injuries, and fatalities have caused a significant setback for e-scooters. Many preventive measures and legislation have been put on the e-scooters, but the number of accidents and injuries has not reduced considerably. In this paper, the current design approach of e-scooters has been analyzed, and the most common range of design parameters have been identified. Thereafter, validated mathematical models have been used to quantify the performance of e-scooters and relate them with the safety aspects. Both standing and seated riders on e-scooters have been considered, and their influence on the dynamic performance has been analyzed and compared with the standard 26-in wheel reference safety bicycle. With more than 80% of the accidents and injuries occurring from falling or colliding with obstacles, this paper tries to correlate the dynamics of uncontrolled single-track vehicles with the safety performance of e-scooters. The self-stability, handling, and braking effect have been considered as major performance matrices. The analysis has shown that the current e-scooter designs are not as stable as the reference safety bicycle. Moreover, these e-scooters have been found unstable within the most common range of legislated riding velocity. The results corroborate with the general perception that the current designs of e-scooters are less stable, easy to lose control, twitchy, or wobbly to ride. Furthermore, the standing posture of the rider on the e-scooter has been found dangerous while braking to avoid any disturbances such as potholes or obstacles. Finally, the front steering design guidelines have been proposed to help modify the current design of e-scooters to improve the dynamic performance, hence the safety of the e-scooter riders and the surroundings.
机译:电动滑板车是最近的趋势,被视为缓解现代交通中第一英里和最后一英里问题的可持续解决方案。然而,令人震惊的事故、受伤和死亡率给电动滑板车带来了重大挫折。许多预防措施和立法已经针对电动滑板车,但事故和伤害的数量并没有大幅减少。本文分析了电动滑板车目前的设计方法,确定了最常见的设计参数范围。此后,验证的数学模型被用于量化电动滑板车的性能,并将其与安全方面联系起来。考虑了电动滑板车上的站立和坐着乘客,分析了他们对动态性能的影响,并与标准26轮参考安全自行车进行了比较。由于80%以上的事故和伤害发生在坠落或与障碍物碰撞时,本文试图将不受控单轨车辆的动力学与电动滑板车的安全性能相关联。自稳定性、操纵性和制动效果被视为主要性能矩阵。分析表明,当前的电动滑板车设计没有参考安全自行车那么稳定。此外,这些电动滑板车在最常见的立法行驶速度范围内不稳定。研究结果证实了人们的普遍看法,即目前电动滑板车的设计不太稳定,容易失控、扭动或摇晃。此外,电动滑板车上的骑手在刹车时的站立姿势很危险,以避免任何干扰,如坑洼或障碍物。最后,提出了前转向设计指南,以帮助修改电动滑板车的当前设计,从而提高电动滑板车的动态性能,从而提高电动滑板车驾驶员和周围环境的安全性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号