Highway Engineering Research Group, Universitat Politècnica de València, 46022 Valencia, Spain.
Sensors (Basel). 2022 Oct 26;22(21):8215. doi: 10.3390/s22218215.
In recent years, cities are experiencing changes in the ways of moving around, increasing the use of micromobility vehicles. Bicycles are the most widespread transport mode and, therefore, cyclists' behaviour, safety, and comfort have been widely studied. However, the use of other personal mobility vehicles is increasing, especially e-scooters, and related studies are scarce. This paper proposes a low-cost open-source data acquisition system to be installed on an e-scooter. This system is based on Raspberry Pi and allows collecting speed, acceleration, and position of the e-scooter, the lateral clearance during meeting and overtaking manoeuvres, and the vibrations experienced by the micromobility users when riding on a bike lane. The system has been evaluated and tested on a bike lane segment to ensure the accuracy and reliability of the collected data. As a result, the use of the proposed system allows highway engineers and urban mobility planners to analyse the behaviour, safety, and comfort of the users of e-scooters. Additionally, the system can be easily adapted to another micromobility vehicle and used to assess pavement condition and micromobility users' riding comfort on a cycling network when the budget is limited.
近年来,城市的出行方式发生了变化,越来越多地使用微型移动车辆。自行车是最广泛使用的交通工具,因此,自行车骑行者的行为、安全和舒适度已经得到了广泛的研究。然而,其他个人移动车辆的使用正在增加,尤其是电动滑板车,相关研究却很少。本文提出了一种低成本的开源数据采集系统,将安装在电动滑板车上。该系统基于 Raspberry Pi,可以收集电动滑板车的速度、加速度和位置,在会车和超车操作期间的横向间隙,以及在自行车道上骑行时微移动用户所经历的振动。该系统已经在自行车道段进行了评估和测试,以确保收集数据的准确性和可靠性。因此,该系统的使用可以让公路工程师和城市交通规划者分析电动滑板车使用者的行为、安全和舒适度。此外,当预算有限时,该系统可以很容易地适应其他微型移动车辆,并用于评估自行车网络的路面状况和微型移动用户的骑行舒适度。