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Flywheel Energy Storage with Mechanical Input-Output for Regenerative Braking

机译:具有机械式输入输出的飞轮储能,用于再生制动

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The system presented in this paper allows the direct transfer of kinetic energy of a vehicle’s motion to a flywheel and vice-versa. For braking, a cable winds onto a pulley geared to the vehicle’s propulsion driveshaft as it unwinds from another pulley geared to the flywheel and then operates in reverse for the transfer of energy in the opposite direction. The cable windings are in one plane resulting in an effective pulley radius that increases when the cable is winding onto it and decreases when unwinding from it. Thus, an increasing driven-to-driving pulley velocity ratio is obtained during a period of energy transfer in either direction. A dynamic analysis simulating the process was developed. Its application is illustrated with a numerical solution based on specific assumed values of system parameters.
机译:本文介绍的系统可以将车辆运动的动能直接传递给飞轮,反之亦然。为了制动,当电缆从另一个与飞轮相连的皮带轮上解开时,电缆缠绕在与该车辆的推进驱动轴相连的皮带轮上,然后反向操作以反向传递能量。电缆绕组位于一个平面中,从而导致有效的滑轮半径,该半径在电缆缠绕到电缆上时会增加,而从电缆上退绕时则会减小。因此,在任一方向上的能量传递期间,获得了增加的驱动皮带轮速度比。开发了模拟过程的动态分析。通过基于系统参数的特定假定值的数值解来说明其应用。

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