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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Bond graph model-based evaluation of a sliding mode controller for a combined regenerative and antilock braking system
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Bond graph model-based evaluation of a sliding mode controller for a combined regenerative and antilock braking system

机译:基于邦德图模型的组合式制动和防抱死制动系统滑模控制器评估

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摘要

Combined regenerative and antilock braking in electric/hybrid-electric vehicles provides higher safety in addition to an energy storing capability. Development of a control law for this type of braking system is a challenging task. The antilock braking system (ABS) uses a control strategy to maintain the wheel slip within a predefined range. A sliding mode controller (SMC) for ABS is developed to maintain the optimal slip value. The braking of the vehicle, performed by using both regenerative and antilock braking, is based on an algorithm that decides how to distribute the braking force between the regenerative braking and the antilock braking in emergency/panic braking situations as well as in normal city driving conditions. Detailed bond graph models of a quarter car and four-wheeled vehicles are used in this article to implement and test the control laws. It is found that with combined regenerative and anti-lock braking, the vehicle's safety increases (in terms of stopping distance and manoeuvrability) and some amount of kinetic energy can be recovered and stored in the regenerative battery pack. The passenger comfort is improved when a sliding mode ABS controller is used in place of a standard ABS controller for the mechanical braking part. Moreover, the influence of load transfer on the wheels during braking was evaluated on a four-wheeled vehicle model.
机译:电动/混合动力汽车中的组合式再生制动和防抱死制动技术除了具有储能功能外,还提供了更高的安全性。为这种类型的制动系统制定控制律是一项艰巨的任务。防抱死制动系统(ABS)使用控制策略将车轮打滑保持在预定范围内。开发了用于ABS的滑模控制器(SMC),以保持最佳滑移值。通过同时使用再生制动和防抱死制动执行的车辆制动基于一种算法,该算法决定了在紧急/紧急制动情况下以及在正常城市行驶条件下,如何在再生制动和防抱死制动之间分配制动力。本文使用四分之一汽车和四轮汽车的详细债券图模型来实现和测试控制律。已经发现,通过将再生制动和防抱死制动相结合,车辆的安全性将提高(在停车距离和机动性方面),并且可以回收一定量的动能并将其存储在再生电池组中。当使用滑动模式ABS控制器代替机械制动部件的标准ABS控制器时,可以改善乘客的舒适度。此外,在四轮车辆模型上评估了负载转移对制动过程中车轮的影响。

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