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Research on energy regeneration and effect of dynamic characteristics of secondary control swing for hydraulic excavator system

机译:液压挖掘机系统二次控制摆动动态特性能量再生及其影响研究

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In the modern era, the demand of energy saving is increasing more and more while the natural resources have been exhausted. Among various possibilities, some methods to recuperate energy during vehicle swing motion have been widely examined. After providing required drastic design changes, electric and hydraulic hybrids designs have shown a great improvement in fuel efficiency. The rotating movement of excavator is called swing or slew and is driven hydraulically. The swing drive is hence driven by a hydraulic motor creating a rotating motion. Following the movement of a joystick, the pump is controlled to match the spool positions, swiveling out. In the proposed system, swing braking time the remaining fluid will save as energy by a simple accumulator. This remaining save energy will be used in the system from accumulator. The proposed system is considered as secondary by using two combination of transformer (motor & pump combination) and have some dissimilarities from the conventional swing system. Furthermore, the paper simulates variable inertia and show the effect of variable moment of inertia in different simulation result. The proposed system will be developed in AMESim software. The proposed system will be more efficient in saving energy.
机译:在现代时代,在自然资源疲惫不堪的情况下,节能的需求越来越多。在各种可能性中,已经广泛地检查了在车辆摆动运动期间恢复能量的一些方法。在提供所需的剧烈设计变化之后,电动和液压混合动力车设计显示出燃油效率的巨大提高。挖掘机的旋转运动被称为摆动或旋转,并液压驱动。因此,摆动驱动器由液压马达产生旋转运动。在操纵杆移动之后,控制泵以匹配阀芯位置,旋转。在所提出的系统中,摆动制动时间剩余的流体将通过简单的蓄能器保存为能量。该剩余的节省能源将在累加器中使用。通过使用变压器(电动机和泵组合)的两种组合,所提出的系统被认为是辅助的,并且与传统的摆动系统具有一些不同的差异。此外,本文模拟了可变惯性,并显示了不同仿真结果中惯性矩的效果。建议的系统将在Amesim软件中开发。所提出的系统在节约能源方面将更有效。

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