再生制动器
发动机制动
动态制动
汽车工程
锁(火器)
制动系统
缓速器
防抱死制动系统
电动汽车
工程类
计算机科学
制动器
机械工程
物理
功率(物理)
量子力学
作者
Jiangchao Shi,Jian Wu,Bing Zhu,Yang Zhao,Weiwen Deng,Xi Chen
摘要
<div class="section abstract"><div class="htmlview paragraph">In this article, the regenerative braking system is designed, which can realize the torque allocation between electric braking and hydraulic braking, where the cost function designed in this article considers factors of braking torque following effect, energy regenerative power, and hydraulic braking consumed power. In addition, a complete anti-lock braking system (ABS) is designed, which is based on regenerative braking. With the optimal slip ratio as control target, target wheel speed, control wheel speed, braking torque control strategy, and enable/disenable control logic of ABS are determined. By <i>MATLAB/Simulink-DYNA4</i> co-simulation and real vehicle test, the feasibility and applicability of ABS based on regenerative braking are verified, under the condition of small severity of braking. According to experiment result, the following conclusions can be obtained: ABS based on regenerative braking can meet the braking requirements of small severity of braking; in co-simulation and real vehicle test, the efficiencies of braking energy recovery are more than 60% and 40% under the conditions of ABS triggered, respectively.</div></div>
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