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Research Review of a Vehicle Energy-Regenerative Suspension System

机译:车辆能量再生悬架系统的研究综述

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摘要

Vehicles are developing in the direction of energy-saving and electrification. suspension has been widely developed in the field of vehicles as a key component. Traditional hydraulic energy-supply suspensions dissipate vibration energy as waste heat to suppress vibration. This part of the energy is mainly generated by the vehicle engine. In order to effectively utilize the energy of this part, the energy-regenerative suspension with energy recovery converts the vibrational energy into electrical energy as the vehicle's energy supply equipment. This article reviews the hydraulically powered suspension of vehicles with energy recovery. The importance of such suspension in vehicle energy recovery is analyzed. The main categories of energy-regenerative suspension are illustrated from different energy recovery methods, and the research status of hydraulic energy-regenerative suspension is comprehensively analyzed. Important factors that affect the shock-absorbing and regenerative characteristics of the suspension system are studied. In addition, some unresolved challenges are also proposed, which provides a reference value for the development of energy-regenerative suspension systems for hybrid new energy vehicles
机译:车辆在节能和电气化方向上发展。悬架已被广泛开发的车辆领域作为关键组成部分。传统的液压能量供应悬架作为废热量消散振动能量以抑制振动。该部分的能量主要由车辆发动机产生。为了有效地利用该部分的能量,能量回收的能量再生悬浮液将振动能量转换成电能作为车辆的能量供应设备。本文审查了具有能量回收的车辆的液压动力悬架。分析了这种悬浮液在车辆能量回收中的重要性。能量 - 再生悬浮液的主要类别从不同的能量回收方法说明,综合分析了液压能量再生悬浮液的研究现状。研究了影响悬浮系统的减震和再生特性的重要因素。此外,还提出了一些未解决的挑战,为混合新能源汽车的能量再生悬架系统提供了参考价值

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