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Design of an Active Bumper with a Series Elastic Actuator for Pedestrian Protection of Small Unmanned Vehicles

机译:具有串联弹性执行器的活跃保险杠,用于小型无人驾驶车辆的行人保护

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When autonomous unmanned vehicles are operated on sidewalks, the vehicles must have high safety standards such as avoiding injury when they come in contact with pedestrians. In this study, we established a design for preventing serious injury when such collisions occur. We designed an active bumper with a series elastic actuator, with the goal of avoiding serious injury to a pedestrian in a collision with a small unmanned vehicle. The series elastic actuator comprised an elastic element in series with a table driven by a ball screw and servo motor. The active bumper was used to control the contact force between a vehicle and a pedestrian. The optimal force for minimizing the deflection of the object of the collision was derived, and the actuator controlled to apply this optimal force. Numerical simulations showed that the active bumper was successful in improving the collision safety of small unmanned vehicles.
机译:当自主无人驾驶车辆在人行道上运行时,车辆必须具有高安全标准,例如避免与行人接触时的伤害。在这项研究中,我们建立了一种防止这种碰撞发生严重伤害的设计。我们设计了一个带有系列弹性执行器的活跃保险杠,目的是避免与小型无人驾驶车辆碰撞的行人严重伤害。串联弹性致动器包括串联的弹性元件,该弹性元件与由滚珠丝杠和伺服电机驱动的台式。活性保险杠用于控制车辆和行人之间的接触力。推导出最小化碰撞物体的偏转的最佳力,并且控制器控制以应用这种最佳力。数值模拟表明,活跃的保险杠成功地提高了小无人驾驶车辆的碰撞安全性。

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