Suspension system design for pedal-assisted cargo E-quadricycle

M. Genç
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Abstract

Electro Micro-Mobility (EMM) has widely increased in Today‘s transportation preferences. The suspension system design based on the road profile in E-Quadricycle needs further investigation to present more optimized EMM vehicles soon. In this study, the pedal-assisted Cargo E-Quadricycle is investigated based on powertrain system modeling considering suspension system design. System modeling is applied to have an optimized suspension system design specified for Cargo E-Quadricycle to provide more comfortable driving. To achieve these targets, one-dimensional physical modeling is obtained, and the key parameters for system design are defined based on the State-space system modeling definition. In the next phase, the suspension system is constructed as a passive-controlled type with assigned suspension parameters considering natural frequency to provide driving comfort in urban transportation. Because four-wheeler Pedal-Assisted Cargo E-Quadricycles have specific vehicle kinematics and dynamics based on their own limited acceleration system and vehicle design, this study presents the suspension system design steps and remarkable dynamic concerns.
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踏板辅助货运电动四轮车的悬挂系统设计
电动微型交通(EMM)在当今的交通方式中得到了广泛应用。基于电动四轮车道路状况的悬挂系统设计需要进一步研究,以便尽快推出更优化的电动微移动车辆。在本研究中,基于动力总成系统建模和悬挂系统设计,对踏板辅助货运电动四轮车进行了研究。通过系统建模,为货运电动四轮车指定了优化的悬挂系统设计,以提供更舒适的驾驶体验。为了实现这些目标,我们获得了一维物理建模,并根据状态空间系统建模定义确定了系统设计的关键参数。在下一阶段,悬架系统被构建为被动控制型,并考虑自然频率分配悬架参数,以提供城市交通中的驾驶舒适性。由于四轮踏板辅助货运电动四轮车基于其自身的有限加速系统和车辆设计,具有特定的车辆运动学和动力学特性,因此本研究介绍了悬架系统的设计步骤和显著的动态关注点。
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