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The gravitational potential energy regeneration system with closed-circuit of boom of hydraulic excavator

机译:液压挖掘机大臂闭路重力势能再生系统

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Considering the disadvantage of higher throttling loss for the open-circuit hydrostatic transmission at present, a novel gravitational potential energy regeneration system (GPERS) of the boom of hydraulic excavator, namely the closed-circuit GPERS, is proposed in this paper. The closed-circuit GPERS is based on a closed-circuit hydrostatic transmission and adopts a hydraulic accumulator as main energy storage element fabricated in novel configuration to recover the entire gravitational potential energy of the boom of hydraulic excavator. The matching parameter and control system design are carried out for the proposed system, and the system is modeled based on its physical attributes. Simulation and experiments are performed to validate the employed mathematical models, and then, the velocity and the pressure performance of system are analyzed. It is observed that the closed-circuit GPERS shows better velocity control of the boom and response characteristics. After that, the average working efficiency of the closed-circuit GPERS of boom is estimated under different load conditions. The results indicate that the proposed system is highly effective and that the average working efficiency in different load conditions varied from 60% to 68.2% for the experiment platform.
机译:针对目前开路静液压传动系统节流损失较大的缺点,提出了一种新型的液压挖掘机悬臂重力势能再生系统(GPERS),即闭路GPERS。闭路GPERS基于闭路静液压传动装置,采用液压蓄能器作为主要储能元件,以新颖的构造制造,以回收液压挖掘机动臂的全部重力势能。对所提出的系统进行匹配参数和控制系统的设计,并根据其物理属性对系统进行建模。通过仿真和实验验证所采用的数学模型,然后分析系统的速度和压力性能。可以观察到,闭路GPERS对动臂的速度控制和响应特性表现出更好的控制。之后,估算出在不同负载条件下动臂闭环GPERS的平均工作效率。结果表明,所提出的系统是高效的,并且在不同的负载条件下,该实验平台的平均工作效率从60%到68.2%不等。

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