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A Customizable Automotive Steering System With a Haptic Feedback Control Strategy for Obstacle Avoidance Notification

机译:具有触觉反馈控制策略的可定制汽车转向系统,用于避障通知

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Increased global use of motorized vehicles has led to a higher number of automotive crashes involving human injuries and fatalities. Greater driver awareness through haptic feedback can provide vital information from the vehicle and surroundings to the driver while minimizing driver distraction. In this paper, steering wheel haptic feedback will be provided to increase the drivers' knowledge of the roadway and driving conditions. This increased knowledge should enable the driver to avoid obstacles presented in the roadway earlier than without any feedback. A high-fidelity customizable driving simulator was utilized to provide nine different levels of sinusoidal haptic feedback via the steering wheel. Mathematical models for the vehicle steering system, with adjustable controller gains, were developed to create torsional feedback. The testing included 25 human subjects ranging in age and driving experience. Driver preferences for feedback amplitude and frequency were gathered, whereas driver/vehicle performance was used as the measure of feedback effectiveness. The laboratory results demonstrate that haptic steering feedback improved driver performance as measured by a 62% reduction in obstacle hit rates, small reductions in peak steering wheel angle and peak vehicle yaw rate, as well as a nearly 10 m (32.8 ft) increase in reaction distance to the obstacles. The research contribution is the successful application of an advanced steering simulator with a steering control strategy to introduce supplemental haptic feedback to the driver through the steering system for roadway avoidance notification.
机译:全球越来越多地使用机动车辆,导致更多的人身伤亡事故。通过触觉反馈提高驾驶员的意识,可以在不使驾驶员分心的情况下,从车辆和周围环境向驾驶员提供重要信息。在本文中,将提供方向盘触觉反馈,以增加驾驶员对道路和驾驶条件的了解。知识的增加应使驾驶员能够比没有任何反馈更早地避免在道路上出现障碍物。利用高保真度可定制的驾驶模拟器通过方向盘提供九种不同级别的正弦触觉反馈。具有可调节的控制器增益的车辆转向系统的数学模型已经开发出来,可以产生扭转反馈。该测试包括25位年龄和驾驶经验不同的人类受试者。收集了驾驶员对反馈幅度和频率的偏爱,而驾驶员/车辆的性能则用作反馈有效性的量度。实验室结果表明,触觉转向反馈改善了驾驶员的表现,通过降低障碍物命中率62%,最大方向盘转角和最大车辆偏航率小幅降低以及反应增加近10 m(32.8 ft)来衡量到障碍物的距离。该研究贡献是具有转向控制策略的高级转向模拟器的成功应用,该模拟器通过转向系统向驾驶员引入了补充触觉反馈,从而避免了道路通行通知。

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