An Improved Zero-Flowrate Switching Control Method to Reduce Switching Losses in a Hydraulic Actuator

IF 2.2 3区 工程技术 Q2 ENGINEERING, MECHANICAL
Actuators Pub Date : 2024-04-08 DOI:10.3390/act13040137
Shuang Peng, Fanglong Yin, Yong Hu
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引用次数: 0

Abstract

Hydraulic switching actuators are high-efficiency, fast response, and low-cost solutions for hydraulic control systems. One of the challenging problems is throttling losses during valve transitions. Previously, the authors proposed a zero-flowrate switching method to reduce the throttling energy loss of the switching valve, where a hydraulic resonator is applied to make the flowrates through the lines approaching zero before the valves are switched off. The major challenge of this approach is fast switching valves whose transition times are less than 2 ms. In this paper, an improved zero-flowrate switching method is presented. It utilizes the capacity with independent inlet/outlet ports to regulate flowrates through the lines. Models of capacity applied in a simple line with different pressure signals are developed to explore characteristics of the capacity, based on which a complete actuation system is developed. In the complete model, resistance and inductance are optimized to achieve the desired flowrate response. The improved zero-flowrate switching method reduces throttling energy losses by 99.945% compared to a hard switching system. The simulation results demonstrated that the improved zero-flowrate switching method performs as expected in the design condition. A capacity with proper volume is able to regulate flowrates through all the lines to zero, with the help of appropriate resistance and inductance. Compared to the previous zero-flowrate switching method, the novel strategy allows slower switching valves applied in hydraulic actuation systems and achieves better efficiency performance. This research paves a new avenue for reducing throttling energy losses and improves system efficiency in hydraulic switching actuators, as well as most of the hydraulic switch-mode circuits.
减少液压推杆开关损耗的改进型零流量开关控制方法
液压开关执行器是液压控制系统的高效、快速响应和低成本解决方案。具有挑战性的问题之一是阀门转换过程中的节流损失。此前,作者提出了一种零流量切换方法来减少切换阀的节流能量损失,即在阀门关闭前,应用液压谐振器使流经管路的流量趋近于零。这种方法的主要挑战在于转换时间小于 2 毫秒的快速切换阀。本文提出了一种改进的零流量切换方法。它利用具有独立入口/出口的容量来调节流经管线的流量。本文开发了应用于具有不同压力信号的简单管线中的容量模型,以探索容量的特性,并在此基础上开发了一个完整的执行系统。在完整模型中,对电阻和电感进行了优化,以实现所需的流量响应。与硬开关系统相比,改进的零流量开关方法可将节流能量损失减少 99.945%。仿真结果表明,改进的零流速开关方法在设计条件下的性能符合预期。在适当的电阻和电感的帮助下,具有适当容积的容量能够将所有线路的流量调节为零。与之前的零流量开关方法相比,新策略允许在液压驱动系统中使用更慢的开关阀,并实现了更好的效率表现。这项研究为减少节流能量损失和提高液压开关执行器以及大多数液压开关模式电路的系统效率铺平了一条新的道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Actuators
Actuators Mathematics-Control and Optimization
CiteScore
3.90
自引率
15.40%
发文量
315
审稿时长
11 weeks
期刊介绍: Actuators (ISSN 2076-0825; CODEN: ACTUC3) is an international open access journal on the science and technology of actuators and control systems published quarterly online by MDPI.
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