首页> 外文期刊>International Journal of Automotive Technology >COMBINED CONTROL OF A REGENERATIVE BRAKING AND ANTI-LOCK BRAKING SYSTEM FOR HYBRID ELECTRIC VEHICLES
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COMBINED CONTROL OF A REGENERATIVE BRAKING AND ANTI-LOCK BRAKING SYSTEM FOR HYBRID ELECTRIC VEHICLES

机译:混合动力汽车的再生制动与防抱死制动系统的组合控制

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摘要

Most parallel hybrid electric vehicles (HEV) employ both a hydraulic braking system and a regenerative braking system to provide enhanced braking performance and energy regeneration. A new design of a combined braking control strategy (CBCS) is presented in this paper. The design is based on a new method of HEV braking torque distribution that makes the hydraulic braking system work together with the regenerative braking system. The control system meets the requirements of a vehicle longitudinal braking performance and gets more regenerative energy charge back to the battery. In the described system, a logic threshold control strategy (LTCS) is developed to adjust the hydraulic braking torque dynamically, and a fuzzy logic control strategy (FCS) is applied to adjust the regenerative braking torque dynamically. With the control strategy, the hydraulic braking system and the regenerative braking system work synchronously to assure high regenerative efficiency and good braking performance, even on roads with a low adhesion coefficient when emergency braking is required. The proposed braking control strategy is steady and effective, as demonstrated by the experiment and the simulation.
机译:大多数并联混合动力电动汽车(HEV)都采用液压制动系统和再生制动系统,以提供增强的制动性能和能量再生。本文提出了一种组合制动控制策略(CBCS)的新设计。该设计基于HEV制动扭矩分配的新方法,该方法使液压制动系统与再生制动系统一起工作。该控制系统满足了车辆纵向制动性能的要求,并将更多的再生能量充回到电池中。在所描述的系统中,开发了逻辑阈值控制策略(LTCS)来动态调整液压制动扭矩,并应用模糊逻辑控制策略(FCS)来动态调整再生制动扭矩。通过控制策略,液压制动系统和再生制动系统可以同步工作,以确保较高的再生效率和良好的制动性能,即使在需要紧急制动的附着系数较低的道路上也是如此。实验和仿真结果表明,所提出的制动控制策略是稳定有效的。

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