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Evaluation of Alternative Steering Devices with Adjustable Haptic Feedback for Semi-Autonomous and Autonomous Vehicles

机译:具有可调节触觉反馈的替代转向装置,用于半自动和自主车辆的可调转向装置

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Emerging autonomous driving technologies, with emergency navigating capabilities, necessitates innovative vehicle steering methods for operators during unanticipated scenarios. A reconfigurable “plug and play” steering system paradigm enables lateral control from any seating position in the vehicle’s interior. When required, drivers may access a stowed steering input device, establish communications with the vehicle steering subsystem, and provide direct wheel commands. Accordingly, the provision of haptic steering cues and lane keeping assistance to navigate roadways will be helpful. In this study, various steering devices have been investigated which offer reconfigurability and haptic feedback to create a flexible driving environment. A joystick and a robotic arm that offer multiple degrees of freedom were compared to a conventional steering wheel. To evaluate the concept, human test subjects interacted with the experimental system featuring a driving simulator with target hardware, and completed post-test questionnaires. Based on the data collected, drivers’ lane keeping performance was superior using a haptic robotic arm with haptic feedback to the joystick and steering wheel with an improvement of up to 70.18% during extreme maneuvers. Haptic feedback, with a lane keeping algorithm, can assist the operator in steering the vehicle given the likely deterioration of driving skills when autonomous vehicles become prevalent.
机译:具有紧急导航能力的新兴自主驾驶技术需要在意外的情况下为运营商进行创新的车辆转向方法。可重新配置的“即插即用”转向系统范式可从车辆内部的任何座位位置进行横向控制。当需要时,驱动器可以访问所吸引的转向输入装置,与车辆转向子系统建立通信,并提供直线命令。因此,提供触觉转向线索和通道保持援助导航道路将有所帮助。在这项研究中,已经研究了各种转向装置,该转向装置提供了可重构性和触觉反馈来创建灵活的驾驶环境。与传统的方向盘相比,操纵杆和提供多程度自由度的机器人手臂。为了评估概念,人类测试受试者与具有目标硬件的驾驶模拟器的实验系统进行交互,并完成了测试后问卷。根据收集的数据,驾驶员车道保持性能优越,使用触觉机器人与操纵杆和方向盘的触觉反馈和方向盘在极端操纵期间高达70.18%。触觉反馈,带有车道保持算法,可以帮助操作员在自动车辆普遍存在时可能对驾驶技能的可能恶化。

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