Optimized braking force distribution during a braking-in-turn maneuver for articulated vehicles

A. Goodarzi, Mohammad Behmadi, E. Esmailzadeh
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引用次数: 14

Abstract

Improvement in braking performance and vehicle stability can be achieved through the use of braking systems whose brake force distribution is variable. Electronic braking force distribution has an important and serious role in the vehicle stopping distance and stability. In this paper a new approach will be presented to achieve the braking force distribution strategy for articulated vehicles. For this purpose, the mathematical optimization process has been implemented. This strategy, defined as an innovative braking force distribution strategy, is based on the wheel slips. The simulation results illustrate proposed strategy can significantly improve the vehicle stability in curved braking for different levels of vehicle deceleration
铰接式车辆转弯制动机动过程中制动力分配优化
通过使用制动力分布可变的制动系统,可以改善制动性能和车辆稳定性。电子制动力分配对车辆的制动距离和稳定性有着重要而严重的影响。本文提出了一种实现铰接式车辆制动力分配策略的新方法。为此,实现了数学优化过程。该策略被定义为一种创新的制动力分配策略,基于车轮滑移。仿真结果表明,在不同减速水平下,该策略均能显著提高弯曲制动时车辆的稳定性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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