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Vehicle combination braking compatibility behavior

机译:车辆组合制动兼容性行为

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Active safety of vehicle combinations during braking highly depends on braking compatibility behavior. There are different influencing factors disabling partial deceleration of individual elements of a vehicle combination to be "compatible" or balanced. The paper deals with an advanced Friction Monitoring and Control System (FMCS), which may be used in braking systems of vehicle combinations. This system is intended to improve vehicle combination braking compatibility behavior, but also braking force distribution performance of combination components by means of monitoring and controlling of braking force variations. Digital brake models are developed for this purpose. They relate analytically and/or numerically braking forces developed in individual brakes of a vehicle combination with the most dominant influencing factors, and in particular with the control pressure. That is how this advanced FMCS anticipates frictional behavior of brakes in the next brake application based on the history of precedent brake applications.
机译:制动期间车辆组合的主动安全性高度取决于制动兼容性行为。存在不同的影响因素,禁用车辆组合的各个元素的部分减速为“兼容”或平衡。本文涉及先进的摩擦监测和控制系统(FMC),其可用于车辆组合的制动系统。该系统旨在通过监测和控制制动力变化来改善车辆组合制动兼容性行为,而且还通过监测和控制制动力变化来制造组合组件的制动力分布性能。为此目的开发了数字制动模型。它们在与最主要的影响因素的单独制动器中产生的分析和/或数值制动力相关,特别是控制压力。这就是这种先进的FMCS如何根据先前制动应用的历史来预测下一个制动应用中制动器的摩擦行为。

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