China Mechanical Engineering ›› 2026, Vol. 37 ›› Issue (5): 1170-1182.DOI: 10.3969/j.issn.1004-132X.2026.05.017

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Energy-saving Control Method for Aerial Work Platforms Based on Variable Speed and Variable Displacement Electro-hydraulic System under Different Working Conditions

LIU Yuchao1(), XI Yi1(), DAI Juchuan1, SUN Yifan1, ZHANG Yuxiao2   

  1. 1.College of Electrical and Mechanical Engineering,Hunan University of Science and Technology,Xiangtan,Hunan,411201
    2.Hunan Sinoboom Intelligent Equipment Co. ,Ltd. ,Changsha,410600
  • Received:2025-07-03 Online:2026-05-25 Published:2026-06-09
  • Contact: XI Yi

基于变转速变排量电液系统的高空作业平台分工况节能控制方法

刘宇超1(), 习毅1(), 戴巨川1, 孙依凡1, 张宇效2   

  1. 1.湖南科技大学机电工程学院, 湘潭, 411201
    2.湖南星邦智能装备股份有限公司, 长沙, 410600
  • 通讯作者: 习毅
  • 作者简介:刘宇超,男,2000年生,硕士研究生。研究方向为机电液一体化。E-mail:2462076630@qq.com
    习毅*(通信作者),男,1988年生,副教授。研究方向为流体传动与控制、机电液一体化。发表论文10余篇。E-mail:xiyi1235@163.com
  • 基金资助:
    湖南省教育厅项目(23B0496);中国博士后科学基金(2023M731822);湖南省研究生科研创新项目(CX20240869)

Abstract:

To address the issues of significant throttling losses at the main valves of the load-sensing system in electric aerial work platforms, a collaborative energy-saving control method for pumps and valves was proposed based on variable speed and variable displacement electro-hydraulic system under different operating conditions. This method combined electro-hydraulic system optimization with a new energy-saving control strategy to reduce throttling losses in the main valve assembly. In terms of electro-hydraulic system optimization, a dual-variable electro-hydraulic system with variable speed-variable displacement was designed, an electro-hydraulic proportional pump was adopted to replace the load-sensing pump, and the pressure compensating valve in the original load-sensing system was removed. In terms of control strategy, under single-action operating conditions, an underflow control strategy was adopted to further reduce throttling losses at the main valves. Under composite action conditions, based on the load mathematical model, a valve port pressure difference feedforward compensation algorithm was proposed, which achieved precise flow distribution for each action while ensuring the system operates at minimum throttling loss. Simulation and experimental results show that compared to the original load-sensing system, the proposed new system and energy-saving control method reduce throttling losses by 59%~85% under single-action conditions and by 10.7% under composite-action conditions, while keeping the flow coupling error in composite actions within 5%.

Key words: aerial work platform, dual-variable, pump-valve coordination, throttling loss

摘要:

针对电动高空作业平台负载敏感系统主阀处节流损失大的问题,提出了一种基于变转速变排量电液系统的分工况泵阀协同节能控制方法。该方法综合采用电液系统优化和新型节能控制策略以达到降低主阀组节流损失的目的。在电液系统优化方面,设计了一种变转速-变排量的双变量电液系统,采用电液比例泵取代负载敏感泵,并移除原负载敏感系统中的压力补偿阀。在控制策略方面,在单动作工况下采用欠流量控制策略以进一步降低主阀的节流损失;在复合动作工况下基于负载数学模型提出了阀口压差前馈补偿算法,在实现各动作流量精准分配的同时使系统在最小节流损失状态下工作。仿真和实验结果表明:相较于原负载敏感系统,采用所提出的新系统和节能控制方法时,单动作工况下系统的节流损失降低了59%~85%,复合动作工况下系统的节流损失降低了10.7%,且复合动作的流量耦合误差控制在5%以内。

关键词: 高空作业平台, 双变量, 泵阀协同, 节流损失

CLC Number: