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A CAN protocol based embedded system to avoid rear-end collision of vehicles

机译:A CAN协议基于嵌入式系统,以避免车辆的后端碰撞

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Driver and passenger safety is one of the prime concerns in modern day vehicle. Alarming statistics of accidents and increased number of vehicles on road demands for an intelligent safety mechanism that helps the driver in handling immediate precarious situations like sudden probability of a rear- end collision. The work proposes a mechanism that not only computes the deceleration of vehicle due to braking and displays the braking intensity through an array of LED but also involves monitoring the braking intensity levels and communicate it to the vehicles that are following it in lambertian range of IR transmitter module to avoid any collision pre-hand, due to any situation that may arise and cause immediate deceleration of the vehicle ahead. An ARM Cortex MO microcontroller will be interfaced with an accelerometer that senses the deceleration levels, a LED array to display the braking intensity and an IR transceiver module for inter-vehicle communication that would transmit pulses whose frequency is modulated proportional to the braking intensity level. To take decision and automatically control the motion of the following vehicle, a collision avoidance system consisting of CortexMO microcontroller is implemented that warns the drier using a buzzer and messages the active and passive safety mechanisms to be activated using CAN protocol and takes control decisions according to an algorithm designed to handle the situation.
机译:司机和乘客安全是现代车辆的主要问题之一。对智能安全机制的智能安全机制有助于驾驶员的智能安全机制,令人震惊的事故和车辆数量增加的统计数据。(帮助驾驶员在突然碰撞的突然碰撞等概率上处理立即的不稳定情况)。该工作提出了一种机制,不仅通过制动来计算车辆的减速,并且通过LED阵列显示制动强度,而且还涉及监测制动强度水平并将其与IR发射器的Lambertian范围内的车辆进行通信。由于任何可能出现的情况和导致前方车辆直接减速的任何情况,模块避免任何碰撞预防。 ARM Cortex Mo微控制器将与感测减速水平的加速度计连接,以显示制动强度的LED阵列和用于车辆间通信的IR收发器模块,其将频率调制与制动强度水平成比例的脉冲。要采取决定并自动控制以下车辆的运动,实现了由Cortexmo微控制器组成的碰撞避免系统,其使用蜂鸣器和消息通过CAN协议进行激活的主动和被动安全机制并根据控制决策来警告干燥器。一种旨在处理情况的算法。

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