首页|期刊导航|农机使用与维修|农业机械液压系统与电气控制协同优化设计

农业机械液压系统与电气控制协同优化设计OA

Collaborative optimization design of agricultural machinery hydraulic system and electrical control

中文摘要英文摘要

农业机械液压系统在实际作业中常出现能耗偏高、温升较快和执行响应滞后等现象.针对这些问题,本文围绕起升、转向和调深等典型作业需求,提出一种液压系统与电气控制协同优化的设计思路.研究中构建了由液压泵、电比例阀以及液压缸或液压马达组成的基本液压回路,并对泵排量、工作压力、阀组及管路等关键参数进行了匹配设计;在此基础上,建立以控制器为核心的电气控制系统,配置压力、流量和位移(或速度)传感器,对执行机构进行闭环调节,并利用 PWM 信号实现比例阀的流量与压力控制.结合台架试验和田间工况对系统进行了调试与对比分析.结果表明,该设计方法能够改善液压与电气控制系统的响应精度和运行稳定性,并在一定程度上减弱系统冲击.

The hydraulic system of agricultural machinery often experiences high energy consumption,rapid temperature rise,and delayed execution response in practical operations.In response to these issues,this article proposes a design approach for the coordinated optimization of hydraulic systems and electrical control,focusing on typical operational re-quirements such as lifting,steering,and depth adjustment.In the study,a basic hydraulic circuit consisting of a hy-draulic pump,an electric proportional valve,and a hydraulic cylinder or motor was constructed,and key parameters such as pump displacement,working pressure,valve group,and pipeline were matched and designed;On this basis,an electrical control system with a controller as the core is established,equipped with pressure,flow,and displacement(or velocity)sensors,to perform closed-loop regulation of the actuator,and to use PWM signals to achieve flow and pres-sure control of the proportional valve.The system was debugged and compared based on bench tests and field conditions.The results indicate that this design method can improve the response accuracy and operational stability of hydraulic and electrical control systems,and to some extent reduce system impact.

刘冬梅

江苏省启东中等专业学校,江苏 南通 226200

农业科技

农业机械液压系统电气控制协同设计电比例阀闭环控制

agricultural machineryhydraulic systemelectrical controlcollaborative designelectric proportional valveclosed-loop control

《农机使用与维修》 2026 (8)

39-43,5

10.14031/j.cnki.njwx.2026.08.009

评论