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Review of energy efficient direct pump controlled cylinder electro-hydraulic technology

机译:节能高效的直接泵控制缸电液压技术

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摘要

Hydraulic cylinder is an indispensable linear actuator in high power applications like construction machinery. In order to reduce the energy consumption, the noise and the waste oil disposal pollution of the hydraulic cylinder control system, the most direct method is adopting the direct pump control technology which eliminates the throttle losses in the main power line. In such system, by changing the speed or the displacement of the pump, the pressure and volume flow will be matched with the need of loads. To date, research works in this field have been reported in many articles, but they are scattered and written in different languages. An overview which can summarize the latest development of this technology appears to be necessary. This paper provides a comprehensive review on this technology, aiming at clarifying recent advances and outlining potential challenges in the research and application of this technology. The review mainly covers three parts: system structure, control, and derived energy recovery system. Also the evolvement of the electro-hydraulic cylinder control system is introduced. The review indicates that attentions should be paid to the control and energy recovery plan of the direct pump controlled cylinder system, and to the newly proposed asymmetric pump controlled differential cylinder technology. It is envisaged that the information gathered in this paper will be a valuable one-stop source of information for researchers, as well as providing a direction for future research in this area.
机译:液压缸是大功率应用(如建筑机械)中必不可少的线性执行器。为了减少液压缸控制系统的能耗,噪音和废油处置污染,最直接的方法是采用直接泵控制技术,以消除主电源线中的节流阀损耗。在这种系统中,通过改变泵的速度或排量,压力和体积流量将与负载需求相匹配。迄今为止,已经在许多文章中报道了该领域的研究成果,但是它们分散并且用不同的语言编写。可能需要概述该技术的最新发展。本文提供了对该技术的全面综述,旨在阐明最新进展并概述该技术的研究和应用中的潜在挑战。审查主要包括三个部分:系统结构,控制和衍生能源回收系统。还介绍了电动液压缸控制系统的发展。审查表明,应注意直接泵控制气缸系统的控制和能量回收计划,以及新提出的非对称泵控制差动气缸技术。可以预计,本文收集的信息将为研究人员提供有价值的一站式信息来源,并为该领域的未来研究提供指导。

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