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Merging into strings of cooperative-adaptive cruise-control vehicles

机译:合并为合作自适应巡航控制车辆的串

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摘要

Cooperative-adaptive cruise-control (CACC) offers the potential to increase roadway capacity by decreasing the size of gaps between vehicles. However, smaller gaps may reduce drivers' ability to safely enter CACC strings. Two driving simulator experiments explored merging in CACC strings (also known as CACC platoons). In Experiment 1, drivers attempted to merge into a continuous stream of simulated CACC vehicles using either a CACC vehicle with merge assist, a CACC vehicle without merge assist, or a manually driven vehicle. All merges made using merge assist were successful. In contrast, one-third of CACC drivers without merge assist and half of manual drivers were involved in a collision during their first merge attempt. The crash rate appeared to be largely due to participants' expectation that CACC vehicles would create a larger gap to accommodate their merging vehicle. Experiment 2 explored the validity of this expectation. Participants encountered two merge events while traveling in a CACC string: a successful merge that occurred immediately in front of their vehicle and an unsuccessful merge attempt that resulted in a crash in their travel lane. Responses to merging vehicles were influenced by the gap size their vehicle maintained, but not by their preferred following distance. The vast majority of participants traveling in a CACC string did not create larger gaps during the typical merge, and instead only took over longitudinal control when in immediate danger of a collision. The finding suggests that features, such as merge assist, could help ensure the safety of vehicles entering CACC strings.
机译:合作 - 自适应Cruise-Control(CACC)通过降低车辆之间的差距尺寸,提供了增加道路容量的潜力。然而,较小的间隙可能会降低驱动程序安全进入CACC字符串的能力。两个驾驶模拟器实验探讨了CACC字符串中的合并(也称为CACC夹)。在实验1中,驱动器试图使用具有合并辅助的CACC载体的CACC载体,没有合并辅助的CACC辆或手动驱动的车辆,将驾驶员合并到模拟的CACC车辆的连续流。所有使用合并助辅助制作的合并都是成功的。相比之下,在第一次合并尝试期间,没有合并助攻和一半的手动驱动程序的CACC驱动程序中的三分之一涉及碰撞。崩溃率似乎在很大程度上是由于参与者的期望,即CACC车辆会产生更大的差距以适应其合并的车辆。实验2探讨了这一期望的有效性。参与者在CACC字符串中旅行时遇到了两个合并事件:在他们的车辆前面发生的成功合并,并在他们的旅行车道中产生了不成功的合并尝试。对合并车辆的反应受到其载体维持的间隙尺寸的影响,而不是其优选的以下距离。在CACC字符串中旅行的绝大多数参与者在典型合并期间没有创造更大的差距,而是在碰撞立即危险时只接管纵向控制。该发现表明,例如合并辅助等功能可以帮助确保进入CACC字符串的车辆的安全性。

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