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Shared control for road departure prevention

机译:防止道路偏离的共享控制

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摘要

A driving simulator experiment is presented investigating different road departure prevention (RDP) setups. To induce the risk of road departure, thirty test drivers were asked to avoid a pylon-confined area (obstacle) while keeping the vehicle within the road limits. The RDP system intervened by applying a haptic-feedback (i.e., haptic shared control) and/or correcting the steering angle (i.e., drive-by-wire (DBW) input-mixing shared control) in the event that a vehicle road departure was likely to occur. The system that determines the correcting steering input is a RDP controller based on the driver's inputs. The results showed that DBW effectively helped drivers to stay within road limits and reduced workload. The haptic shared control had a significant influence on the measured steering torque, but limited effect on the steering wheel angle and the vehicle path. The DBW system resulted in drivers making counter-corrections demoting their performance. In conclusion, shared control for RDP is effective, although more research needs to be conducted regarding the human response in situations where the relationship between the steering wheel angle and the front wheels' steering angle is altered while driving.
机译:提出了驾驶模拟器实验,以研究不同的道路偏离预防(RDP)设置。为了诱发道路偏离的风险,要求三十名测试驾驶员在将车辆保持在道路限制范围内时避开塔架限制区域(障碍物)。 RDP系统通过以下方式进行干预:在发生车辆道路偏离的情况下,应用触觉反馈(即触觉共享控制)和/或校正转向角(即电传驾驶(DBW)输入混合共享控制)。可能发生。确定正确的转向输入的系统是基于驾驶员输入的RDP控制器。结果表明,DBW有效地帮助驾驶员保持在道路限制内并减少了工作量。触觉共享控制对测得的转向扭矩有很大影响,但对方向盘角度和车辆路径的影响有限。 DBW系统导致驱动程序进行了反纠正,从而降低了其性能。总之,RDP的共享控制是有效的,尽管在驾驶过程中方向盘转角与前轮转向角之间的关系发生变化的情况下,仍需要对人的反应进行更多的研究。

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