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Simulation verification for automobile anti-lock braking system bench test principle

机译:汽车防闸制动系统台阶试验原理仿真验证

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Anti-lock braking system (ABS) is an automobile safety system that has been designed to achieve maximum deceleration by preventing the wheels from locking up and avoiding uncontrolled skidding. In this paper, a bench-based ABS test principle was proposed, which can provide different surface adhesion coefficient dynamically for four wheels. And the simulation model consists of the vehicle model, wheel model, braking force model, and tyre-road model, was established to verify the principle. The simulation experiments on a variety of simulated road conditions are carried out. And the comparative analysis between the ABS bench detection model and ABS road test model is accomplished. The comparative analysis indicated that the simulation curves of the bench detection method and those from road test model are highly consistent in the changing trend under different braking conditions, which verified the correctness and feasibility of the proposed bench detection scheme.
机译:防抱死制动系统(ABS)是一种汽车安全系统,设计为通过防止车轮锁定并避免不受控制的滑动来实现最大减速。本文提出了一种基于板凳的ABS测试原理,其可以为四个轮子动态提供不同的表面粘附系数。而模拟模型由车辆模型,车轮模型,制动力模型和轮胎道路模型组成,建立了验证原理。进行了各种模拟道路条件的仿真实验。 ABS台支路检测模型和ABS道路测试模型之间的比较分析是实现的。比较分析表明,在不同制动条件下的改变趋势下,台支检测方法和道路测试模型的模拟曲线在不同制动条件下的变化趋势中,这验证了所提出的台面检测方案的正确性和可行性。

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