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首页> 外文期刊>Journal of Mechatronics, Electrical Power, and Vehicular Technology >Braking System Modeling and Brake Temperature Response to Repeated Cycle
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Braking System Modeling and Brake Temperature Response to Repeated Cycle

机译:制动系统建模和制动温度对重复循环的响应

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摘要

Braking safety is crucial while driving the passenger or commercial vehicles. Large amount of kinetic energy is absorbed by four brakes fitted in the vehicle. If the braking system fails to work, road accident could happen and may result in death. This research aims to model braking system together with vehicle in Matlab/Simulink software and measure actual brake temperature. First, brake characteristic and vehicle dynamic model were generated to estimate friction force and dissipated heat. Next, Arduino based prototype brake temperature monitoring was developed and tested on the road. From the experiment, it was found that brake temperature tends to increase steadily in long repeated deceleration and acceleration cycle.
机译:驾驶乘用车或商用车时,制动安全至关重要。车辆中安装的四个制动器吸收了大量的动能。如果制动系统无法正常工作,则可能发生交通事故并可能导致死亡。本研究的目的是在Matlab / Simulink软件中对制动系统和车辆进行建模,并测量实际制动温度。首先,产生制动特性和车辆动力学模型以估计摩擦力和散热。接下来,在道路上开发并测试了基于Arduino的原型制动器温度监控器。从实验中发现,在长时间反复的减速和加速循环中,制动器温度趋于稳定地升高。

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