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Calibration and evaluation of responsibility-sensitive safety (RSS) in automated vehicle performance during cut-in scenarios

机译:校准和评估在切割方案期间自动化车辆性能中的责任敏感安全(RSS)

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The ability of automated vehicles (AV) to avoid accidents in complex traffic environments is the focus of considerable public attention. Intel has proposed a mathematical model called Responsibility-Sensitive Safety (RSS) to ensure AVs maintain a safe distance from surrounding vehicles, but testing has, to date, been limited. This study calibrates and evaluates the RSS model based on cut-in scenarios in which minimal time-to-collision (TTC) is less than 3 s. Two hundred cut-in events were extracted from Shanghai Naturalistic Driving Study data, and the corresponding scenario information for each event was imported into a simulation platform. In each scenario, the human driver was replaced by an AV driven by the model predictive control-based adaptive cruise control (ACC) system embedded with the RSS model. The safety performance of three conditions, the human driver, RSS-embedded ACC model, and ACC-only model, were evaluated and compared. Compared to the performance of human drivers and ACC-only algorithm respectively, the RSS model increased the average TTC per event by 2.86 s and 0.94 s, shortened time-exposed TTC by 1.34 s and 0.65 s, and reduced time-integrated TTC by 0.91 s2 and 0.72 s2. These changes indicate that the RSS-embedded ACC model can improve safety performance in emergent cut-in scenarios. The RSS model can therefore be applied as a security guarantee, that is, to ensure the AV?s timely awareness and response to dangerous cut-in situations, thus mitigating potential conflict.
机译:自动化车辆(AV)避免复杂交通环境中的事故的能力是大众关注的重点。英特尔提出了一种称为责任敏感安全(RSS)的数学模型,以确保AVS保持距离周围车辆的安全距离,但迄今为止,测试已经有限。本研究基于最小碰撞(TTC)小于3秒的切割方案来校准并评估RSS模型。从上海的自然主义驾驶研究数据中提取了两百个切入事件,并将每个事件的相应场景信息导入仿真平台。在每种情况下,人员驾驶员被由嵌入RSS模型的模型预测控制的自适应巡航控制(ACC)系统驱动的AV代替。评估并进行比较三种条件,人体驱动器,RSS嵌入式ACC模型和仅适用于ACC型号的安全性能。与分别的人类驱动因素和仅限ACC算法的性能相比,RSS模型将平均TTC每次事件增加2.86秒和0.94秒,缩短的时间暴露的TTC为1.34 S和0.65秒,并减少时间 - 集成的TTC 0.91 S2和0.72 S2。这些变化表明RSS嵌入式ACC模型可以提高紧急切割方案中的安全性能。因此,RSS模型可以作为安全保障应用,即确保AV的及时意识和对危险切割情况的响应,从而减轻潜在的冲突。

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