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Regenerative Braking Experimental Tests and Results for Formula Student Car

机译:食品学生汽车的再生制动实验测试和结果

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In this paper , the tuning process of a regenerative braking system for a full electric Formula Student car is reported. Experimental results will be discussed and recovered energy will be measured. In order to obtain the best tuning some preliminary requirements have been decided: no - slip motion of traction wheels during braking phase, no over current and over voltage of Li-ion cells and the best feeling from the braking pedal for the driver. The main target of the regenerative braking system is to obtain the maximum recovered energy during the Endurance event in a typical Formula Student Competition (FS Germany, Hockenheim ring). First, an accurate estimation of the admissible braking torques with the tires used was carried out, starting from the magic formula of Pacejka of the tires. The maximum electric braking torque that the installed engine can provide at various speeds was then estimated, compatibly with the charging currents allowed by the storage system. Subsequently, a mechanical regulating device for regenerative braking was designed and described here, installed directly on the gear lever system that connects the brake pedal to the brake pumps. The proposed system is able to appropriately delay the entry into action of the hydraulic brake pumps and this delay is mechanically adjustable by acting on threaded pins. In this way, the interval of actuation of the brake pedal which activates only the electric braking can be adjusted and tuned. Finally, the overall project was tested on the track, in order to validate the hypotheses previously calculated and determine the setting capable of optimizing the energy recovered during a test equivalent to the Endurance event, compatibly with the constraints of the installed systems on board.
机译:本文报道,报道了全电气配方学生汽车再生制动系统的调谐过程。将讨论实验结果并测量恢复能量。为了获得最佳调整,已经确定了一些初步要求:制动阶段期间的牵引轮的牵引圈,没有锂离子电池的电流和过电压,以及驾驶员制动踏板的最佳感觉。再生制动系统的主要目标是在典型的公式学生竞赛中获得耐久性事件中的最大回收能量(FS德国,Hockenheim Ring)。首先,从轮胎Pacejka的神奇配方开始,进行了使用使用的轮胎的可允许制动扭矩的精确估计。然后,随着存储系统允许的充电电流估计安装发动机可以以各种速度提供所安装的发动机的最大电动制动扭矩。随后,这里设计并描述了用于再生制动的机械调节装置,直接安装在齿轮杆系统上,该齿轮杆系统连接到制动泵的制动踏板。所提出的系统能够适当地延迟液压制动泵的作用,并且这种延迟通过作用在螺纹销上来机械地调节。以这种方式,可以调节和调谐仅激活电动制动的制动踏板的致动的间隔。最后,在轨道上测试了整个项目,以便验证先前计算的假设,并确定能够在测试期间恢复的能量,该设置能够兼容于电路板上安装系统的约束。

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