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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Electromagnetic Energy-Harvesting Shock Absorbers: Design, Modeling, and Road Tests
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Electromagnetic Energy-Harvesting Shock Absorbers: Design, Modeling, and Road Tests

机译:电磁能量吸收减震器:设计,建模和路试

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This paper presents the design, modeling, bench experiments, and road tests for a retrofit regenerative shock absorber based on a permanent magnetic generator and a rack-pinion mechanism for the purposes of energy harvesting and vibration damping. Results show that variable damping coefficients and the asymmetric feature in jounce and rebound motions are achieved by controlling the electrical load of the shock absorber. Improved efficiency and reliability are achieved by utilizing a roller to guide the rack and preload on the gear transmission to reduce backlash and friction. A peak power of 68 W and average power of 19 W are attained from one prototype shock absorber when the vehicle is driven at 48 km/h (30 mi/h) on a fairly smooth campus road.
机译:本文介绍了一种基于永磁发电机和齿条-小齿轮机构的再生蓄能减震器的设计,建模,实验和路试,目的是为了收集能量和减振。结果表明,通过控制减震器的电负载,可以实现可变的阻尼系数以及颠簸和回弹运动中的不对称特征。通过利用滚柱来引导齿条并在齿轮传动装置上预加载以减少反冲和摩擦,可以提高效率和可靠性。当车辆在相当平坦的校园道路上以48 km / h(30 mi / h)的速度行驶时,一个原型减震器可实现68 W的峰值功率和19 W的平均功率。

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