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A novel hybrid control strategy for potential energy regeneration systems of hybrid hydraulic excavators

机译:混合液压挖掘机潜在能量再生系统的新型混合控制策略

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摘要

Excavators as a kind of typical construction machinery are widely used in all kinds of earthworks. Due to the low efficiency of the excavator, many enterprises and researchers have been committed to improving its efficiency. Energy regeneration system is an effective energy-saving technology, which has attracted much attention in recent years. However, the traditional energy regeneration system pays much attention to the energy saving, while the maneuverability is not fully considered. This article focuses on the maneuverability and the energy saving of the hybrid hydraulic excavator boom. A novel hybrid control method to guarantee the dynamic performance of the energy regeneration system, which is based on an electrical potential energy regeneration system, is proposed. A combined use of a torque controller for the permanent-magnet synchronous machine and a position controller for the proportional pressure valve makes the dynamic performance of the potential energy regeneration system insensitive to the influence from the direct current voltage, the capacity of the inverter as well as the cylinder speed, and achieves fast response and maximum energy regeneration simultaneously. To verify the effectiveness of the hybrid control method for the potential energy regeneration system, co-simulations are carried out in AMESim and Simulink. The results show that the dynamic performance of the potential energy regeneration system with the hybrid control method is close to a throttle-governing system and the regenerated potential energy is considerable.
机译:挖掘机作为一种典型的工程机械广泛应用于各种土方工程中。由于挖掘机的效率低下,许多企业和研究人员一直致力于提高其效率。能量再生系统是一种有效的节能技术,近年来备受关注。然而,传统的能量再生系统非常注重节能,而可操作性并未得到充分考虑。本文重点介绍混合液压挖掘机动臂的可操纵性和节能效果。提出了一种基于电势能量再生系统的新型混合控制方法,以保证能量再生系统的动态性能。永磁同步电机的扭矩控制器和比例压力阀的位置控制器的组合使用使势能再生系统的动态性能对直流电压,逆变器容量以及直流电压的影响不敏感作为气缸速度,并同时实现快速响应和最大能量再生。为了验证混合控制方法对潜在能量再生系统的有效性,在AMESim和Simulink中进行了联合仿真。结果表明,采用混合控制方法的势能再生系统的动态性能接近节气门控制系统,再生势能相当大。

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