期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
神经网络在带式输送机张紧力控制系统中的应用与对比 被引量:1
1
作者 吕杰 《机械管理开发》 2023年第7期225-227,共3页
为解决带式输送机在运输过程中由于负载动态变化导致输送带和滚筒之间张紧力不足导致摩擦力不够,影响运输效率和安全性的问题,设计了可应用带式输送机张紧力进行提前预测的前馈控制系统,并根据带式输送机工况提出了保压、升压和降压控... 为解决带式输送机在运输过程中由于负载动态变化导致输送带和滚筒之间张紧力不足导致摩擦力不够,影响运输效率和安全性的问题,设计了可应用带式输送机张紧力进行提前预测的前馈控制系统,并根据带式输送机工况提出了保压、升压和降压控制策略和基于差分进化算法对神经网络控制算法进行优化的理念。通过仿真分析验证了对带式输送机张紧力预测的效果。 展开更多
关键词 带式输送机 张紧力 神经网络 升压控制策略 差分进化算法
下载PDF
Model-based trajectory tracking control for an electrohydraulic lifting system with valve compensation strategy 被引量:3
2
作者 周华 侯交义 +1 位作者 赵勇刚 陈英龙 《Journal of Central South University》 SCIE EI CAS 2012年第11期3110-3117,共8页
The natural frequency of the electrohydraulic system in mobile machinery is always very low,which brings difficulties to the controller design.To improve the tracking performance of the hydraulic system,mathematical m... The natural frequency of the electrohydraulic system in mobile machinery is always very low,which brings difficulties to the controller design.To improve the tracking performance of the hydraulic system,mathematical modeling of the electrohydraulic lifting system and the rubber hose was accomplished according to an electrohydraulic lifting test rig built in the laboratory.Then,valve compensation strategy,including spool opening compensation (SOC) and dead zone compensation (DZC),was designed based on the flow-pressure characteristic of a closed-centered proportional valve.Comparative experiments on point-to-point trajectory tracking between a proportional controller with the proposed compensations and a traditional PI controller were conducted.Experiment results show that the maximal absolute values of the tracking error are reduced from 0.039 m to 0.019 m for the slow point-to-point motion trajectory and from 0.085 m to 0.054 m for the fast point-to-point motion trajectory with the proposed compensations.Moreover,tracking error of the proposed controller was analyzed and corresponding suggestions to reduce the tracking error were put forward. 展开更多
关键词 electrohydraulic system trajectory tracking control valve compensation dead zone compensation mobile machinery
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部