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A novel indirect-drive regenerative shock absorber for energy harvesting and comparison with a conventional direct-drive regenerative shock absorber

机译:一种用于能量收集的新型间接驱动蓄能减震器,并与传统的直接驱动蓄能减震器进行比较

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Energy harvesting from the shock absorbers is now becoming an important technology in developing the electrical vehicles. Compared with other kinetic energy sources such as engine and brake systems which are continuous or periodic, the shock absorber is subjected to the fluctuated linear motion with relatively small displacement. This paper presents a novel indirect-drive regenerative shock absorber system that utilizes an arm teeth mechanism to achieve linear to rotary motion conversion and to amplify its input speed for increasing energy harvesting output. The fluctuation of road randomness can be smoothed out through the flywheel. The proposed design has the advance of achieving all the targets with less number of components. Two prototypes of the direct-drive and indirect-drive regenerative shock absorbers have been built. The simulation models have been developed and validated by experimental results. The performance of this new indirect-drive system has been compared, through experimental testing and analytical modeling, with that of a conventional direct-drive system of the same generator configuration. The results show that this indirect-drive system can achieve greater peak power output and broader frequency bandwidth than the conventional direct-drive system. The indirect drive system also presents a better ride comfort up to 13 Hz. Using Monte Carlo simulation, a parameter sensitivity analysis of both the indirect-drive and direct-drive systems has been carried out to compare their energy harvesting performances in terms of increasing the peak power output and broadening the energy harvesting frequency bandwidth. In both the systems, choosing the right tyre stiffness and electromechanical coupling constant is beneficial to increasing the peak power output ratio and the harvesting frequency bandwidth. The right choice of the gear ratio can further improve the peak power output ratio of the indirect-drive system. The variation of these parameters will allow for possibility of achieving higher power output when vehicle is driven on random road surfaces.
机译:现在,从减震器中收集能量已成为开发电动汽车的一项重要技术。与连续或周期性的其他动能源(例如发动机和制动系统)相比,减震器以相对较小的位移经受波动的线性运动。本文提出了一种新颖的间接驱动再生减震器系统,该系统利用臂齿机构实现了线性到旋转运动的转换,并放大了其输入速度以增加能量收集的输出。可以通过飞轮消除道路随机性的波动。拟议的设计具有以更少的组件数量实现所有目标的进步。已制造出直接驱动和间接驱动再生式减震器的两个原型。仿真模型已经开发并通过实验结果验证。通过实验测试和分析建模,已将该新的间接驱动系统的性能与相同发电机配置的常规直接驱动系统的性能进行了比较。结果表明,与传统的直接驱动系统相比,这种间接驱动系统可以实现更大的峰值功率输出和更宽的频率带宽。间接驱动系统还提供了高达13 Hz的更好乘坐舒适性。使用蒙特卡洛模拟,已经对间接驱动系统和直接驱动系统进行了参数敏感性分析,以比较它们在增加峰值功率输出和扩展能量收集频率带宽方面的能量收集性能。在两个系统中,选择合适的轮胎刚度和机电耦合常数都有助于提高峰值功率输出比和收获频率带宽。正确选择齿轮比可以进一步提高间接驱动系统的峰值功率输出比。这些参数的变化将允许在随机路面上行驶车辆时获得更高的功率输出。

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