首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Collaborative control of a dual electro-hydraulic regenerative brake system for a rear-wheel-drive electric vehicle
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Collaborative control of a dual electro-hydraulic regenerative brake system for a rear-wheel-drive electric vehicle

机译:后轮驱动电动车辆双电液再生制动系统的协作控制

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Within the field of electric vehicles, the cooperative control of a dual electro-hydraulic regenerative brake system using the foot brake pedal as the sole input of driver brake requests is a challenging control problem, especially when the electro-hydraulic brake system features on/off solenoid valves which are widely used in the automotive industry. This type of hydraulic actuator is hard to use to perform a fine brake pressure regulation. Thus, this paper focuses on the implementation of a novel controller design for a dual electro-hydraulic regenerative brake system featuring on/off solenoid valves which track an “ideal” brake force distribution. As an improvement to a standard brake force distribution, it can provide the reach of the maximum braking adherence and can improve the energy recovery of a rear-wheel-drive electric vehicle. This improvement in energy recovery is possible with the complete substitution of the rear hydraulic brake force with a regenerative brake force until the reach of the electric powertrain constraints. It is done by performing a proper brake pressure fine regulation through the proposed variable structure control of the on/off solenoid valves provided by the hydraulic platform of the vehicle stability system. Through road tests, the tracking feasibility of the proposed brake force distribution with the mechatronic system developed is validated.
机译:在电动车辆领域内,使用脚制动踏板的双电液再生制动系统的协作控制作为驾驶员制动请求的唯一输入是一个具有挑战性的控制问题,尤其是当电动液压制动系统打开/关闭时电磁阀广泛用于汽车行业。这种类型的液压致动器很难用于执行精细制动压力调节。因此,本文重点研究了一种新型控制器设计,用于双电液再生制动系统,其特征在于开/关电磁阀,该阀门跟踪“理想”制动力分布。作为对标准制动力分布的改进,它可以提供最大制动粘附的覆盖力,并且可以改善后轮驱动电动车的能量回收。随着后液压制动力的完全取代,能量回收的这种改善是可能的再生制动力直到电动动力系约束的覆盖范围。通过通过由车辆稳定系统的液压平台提供的开/关螺线管阀的所提出的可变结构控制进行适当的制动压力微调来完成。通过道路测试,验证了用机电系统开发的提出的制动力分布的跟踪可行性。

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