With the recent development of autonomous vehicle technology, there have been active efforts on the deployment of this technology at different scales that include urban and highway driving. While many of the prototypes showcased have been shown to operate under specific cases, little effort has been made to better understand their shortcomings and generalizability to new areas. Distance, uptime and number of manual disengagements performed during autonomous driving provide a high-level idea on the performance of an autonomous system but without proper data normalization, testing location information, and the number of vehicles involved in testing, the disengagement reports alone do not fully encompass system performance and robustness. Thus, in this study a complete set of metrics are applied for benchmarking autonomous vehicle systems in a variety of scenarios that can be extended for comparison with human drivers and other autonomous vehicle systems. These metrics have been used to benchmark UC San Diego's autonomous vehicle platforms during early deployments for micro-transit and autonomous mail delivery applications.
翻译:随着汽车自主技术的最近发展,人们积极努力在不同规模上部署这一技术,包括城市和公路驾驶,虽然展示的许多原型在特定情况下已经证明可以运行,但很少努力更好地了解其缺点和对新地区的可概括性,在自主驾驶期间进行的人工脱轨提供了自主系统性能的高层次想法,但没有适当的数据正常化、测试地点信息,也没有参与测试的车辆数量,但单靠脱离接触报告并不完全包括系统性能和稳健性,因此,在这项研究中,在各种情况下,对自主车辆系统的基准应用了一套完整的衡量标准,可以与人的驾驶员和其他自主车辆系统进行比较,在早期部署用于微转口和自动邮件传送应用程序时,这些衡量标准被用来作为圣地亚哥联合自卫组织的自主车辆平台的基准。