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Rider assistance system with an active safety mechanism

机译:具有主动安全机制的车手辅助系统

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摘要

This paper discusses on the design and use of emerging technologies to provide a rider assistance system with an integrated safety mechanism for two wheelers (2W). This paper identifies the most frequent causes of two wheeler accidents and how the rider interacts with the vehicle during the pre-crash phase and vehicle behavior by analyzing the two wheeler accident data. Rider Assistance System (RAS) shall identify the existing technologies and safety systems in passenger cars and assess their usability or with modifications in two wheelers. This system shall continuously monitor the approaching path for any stationary or moving obstacles. And also monitors the rider's field of vision for any deviation from the intended path. These inputs shall be achieved either by range sensor based technology or/and a computer vision based technology. These input parameters shall be processed by an Electronic Control Unit (ECU) to take an autonomous decision to avoid a crash or to warn the rider to take an action. The autonomous decision shall be de-accelerating the vehicle by intervening the rider's acceleration inputs. With this autonomous action of the system, a possible crash shall be prevented ensuring rider's safety.
机译:本文讨论了新兴技术的设计和使用,以为带有两个两轮车(2W)的集成安全机制的驾驶员辅助系统提供帮助。本文通过分析两次轮车事故数据,确定了两次轮车事故的最常见原因,以及车手在碰撞前阶段与车辆的相互作用以及车辆行为。车手辅助系统(RAS)应识别乘用车中的现有技术和安全系统,并评估其可用性或对两个轮车进行修改。该系统应连续监视进近路径中是否有任何静止或移动障碍物。并且还监视骑手的视野是否偏离预期路径。这些输入应通过基于距离传感器的技术或/和基于计算机视觉的技术来实现。这些输入参数应由电子控制单元(ECU)处理,以做出自主决定以避免碰撞或警告骑手采取行动。自主决定应通过干预驾驶员的加速度输入来使车辆减速。通过系统的这种自主动作,应避免可能发生的撞车事故,以确保骑手的安全。

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