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Integrated control of braking energy regeneration and pneumatic anti-lock braking

机译:制动能量再生和气动防抱死制动的集成控制

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This paper mainly focuses on integrated control of the brake system of a hybrid electric vehicle, i.e. the integration of friction braking and regenerative braking during anti-lock braking control and series brake blending during normal deceleration. Based on a series regenerative braking system, the structure of an integrated brake system is proposed. The models of each part of a hybrid electric bus are built in MATLAB–Simulink, taking authorized articles as references. A test bench with the original pneumatic brake system of a bus is also built to carry out hardware-in-the-loop (HIL) tests of the integrated brake system and to study the characteristics of the system better. The integrated control strategy is proposed on the basis of a pneumatic anti-lock braking strategy. Simulation results show that the participation of regenerative braking in the anti-lock braking control can be beneficial to both the ride comfort and the braking performance of the vehicle. HIL test results validate the results of the simulations. An integrated brake controller is designed and made to carry out the control strategies on board. A field in which further research could be carried out is also proposed.
机译:本文主要研究混合动力电动汽车制动系统的集成控制,即防抱死制动控制期间的摩擦制动和再生制动的集成以及正常减速期间的串联制动混合。基于串联再生制动系统,提出了一种综合制动系统的结构。混合动力电动客车各部分的模型均建立在MATLAB–Simulink中,并以授权的文章作为参考。还构建了具有公交车原始气动制动系统的测试台,以对集成制动系统进行硬件在环(HIL)测试,并更好地研究系统的特性。基于气动防抱死制动策略,提出了集成控制策略。仿真结果表明,再生制动参与防抱死制动控制既有利于车辆的乘坐舒适性,又有利于车辆的制动性能。 HIL测试结果验证了仿真结果。设计并制造了集成的制动控制器,以执行船上的控制策略。还提出了可以进行进一步研究的领域。

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