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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >A novel approach to design and control of an active suspension using linear pump control-based hydraulic system
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A novel approach to design and control of an active suspension using linear pump control-based hydraulic system

机译:基于线性泵控制的液压系统设计和控制主动悬架的新方法

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This paper presents a novel design and control method of an active suspension system using a linear pump control-based hydraulic system for a cost-effective application. Various active suspension systems have been proposed and applied to vehicles due to its ability to improve ride comfort and handling performance even though these active suspension systems are not popular because of their complexity, high cost, heavyweight, and low power efficiency. A new type of active suspension actuator system was designed and validated herein based on the methods of actuator sizing and modified control scheme to address the aforementioned issues. System power capability has been analyzed under various dynamics and road conditions. Active suspension actuator components have been designed based on the results. The electro-hydraulic system is powered by a battery to reduce the energy consumption of the system; hence, it is operated by torque on demand. A double-acting linear hydraulic motor pump with a dual rack and pinion has been proposed for hydraulic force control with a simple on/off switch operation. The actuator force has been controlled by continuous linear motor pump displacement control via torque control using a three-phase synchronous brushless alternative current motor. Dynamic performance evaluation of the actuator system has been conducted using AMESIM and actual rig test. Active height and roll control algorithms for the enhancement of vehicle dynamics considering actuator dynamics have also been developed and validated through the rig and real vehicle tests. The evaluation results showed that the linear motor pump-based active suspension system performs as well as the previous complicated hydraulic active suspension system. The new active system proposed in this study was able to improve the vehicle dynamics using cost-effective actuation system significantly.
机译:本文介绍了一种使用基于线性泵控制的液压系统的主动悬架系统的新颖设计和控制方法,以实现经济效益。已经提出了各种主动悬架系统并应用于车辆,因为它可以提高舒适性和处理性能,即使这些活跃的悬架系统由于它们的复杂性,高成本,重量级和低功率效率而不流行。在此基于致动器尺寸和修改的控制方案的方法设计和验证了一种新型的主动悬架致动器系统,以解决上述问题。在各种动态和道路条件下分析了系统功率能力。基于结果设计了主动悬架执行器组件。电动液压系统由电池供电,以降低系统的能量消耗;因此,它按需按需按扭矩操作。已经提出了一种具有双架和小齿轮的双作用液压机动泵,用于具有简单开/关开关操作的液压力控制。通过使用三相同步无刷替代电流电动机通过扭矩控制通过连续的线性电动机泵位移控制来控制致动器力。执行器系统的动态性能评估已经使用Amesim和实际钻机测试进行。考虑执行器动力学的车辆动力学增强的主动高度和滚动控制算法也通过钻机和真实的车辆测试进行了开发和验证。评估结果表明,基于线性电动机泵的有源悬架系统,以及先前复杂的液压有源悬架系统。本研究中提出的新型活跃系统能够显着使用经济高效的致动系统来改善车辆动态。

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