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Semi-autonomous Vehicle Transmission and Braking Systems

机译:半自动车辆变速箱和制动系统

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In recent times, advancement in the automotive field has made major difference in the evolution of car over a decade. This evolution has made vehicles to move without a driver, and the vehicle performance has improved drastically. As autonomous vehicle is the future mode of transportation, nowadays, it plays a major role in research and development of an automotive industry. In this work, a semi-autonomous system which can be used in small electric vehicles has been built by operating a part of the transmission system and brake as automatic and rest as manual. In this system, the clutch, accelerator, and brake system are made to work automatically by predicting the obstacles using ultrasonic sensors. The shifting of gear alone is done manually. This system is built using a Bajaj CT100 engine, transmission systems, and drum brake. The engine power is transferred to the wheel through a modified transmission system. A Raspberry Pi controller and Python coding are used to control the system. By using an ultrasonic sensor, obstacles are detected, and according to the obstacle distance, the system will be made to start and run.
机译:近来,汽车领域的进步在十年上的汽车演变中产生了重大影响。这种进化使车辆在没有驾驶员的情况下移动,并且车辆性能急剧改善。作为自治车辆是未来的运输方式,现在,它在汽车行业的研发中发挥着重要作用。在这项工作中,通过操作一部分传动系统和制动器作为自动和休息,可以在小型电动车辆中使用的半自动系统。在该系统中,通过预测使用超声传感器预测障碍物,使离合器,加速器和制动系统自动地工作。仅手动完成齿轮的移位。该系统是使用Bajaj CT100发动机,传输系统和鼓式制动器构建的。发动机电源通过修改的传输系统传送到车轮。覆盆子PI控制器和Python编码用于控制系统。通过使用超声波传感器,检测到障碍物,并根据障碍物距离,系统将开始和运行。

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