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基于单片机与改进PID的智能电液伺服控制系统研究
引用本文:刘程,邬志军.基于单片机与改进PID的智能电液伺服控制系统研究[J].井冈山大学学报(自然科学版),2019,40(4):72-76.
作者姓名:刘程  邬志军
作者单位:六安职业技术学院汽车与机电工程学院,安徽,六安,237000;皖西学院机械与车辆工程学院,安徽,六安,237000
基金项目:安徽省高等学校质量工程项目(2016tszy081)
摘    要:为了实现对电液伺服系统进行快速、准确以及较为平稳的控制,提出了基于单片机与改进PID的智能电液伺服控制系统。通过对电液伺服系统的主要组成进行分析,并根据液压控制理论,得出了电液伺服系统中电液伺服阀等机构的数学模型。利用MSP单片机作为主控器,以接收位移传感器采集到的实时位移值,根据该值对电液伺服阀的开度进行控制。引入PID控制器,通过神经网络算法对PID控制器进行改进,设计电液伺服控制系统的控制策略,以实现电液伺服控制系统的智能化。通过Matlab/Simulink软件对所提方法进行了仿真实验,结果显示,所提方法不仅能够较为快速、准确地对电液伺服系统进行控制,而且控制过程较为平稳,具有良好的控制效果。

关 键 词:电液伺服系统  电液伺服控制  MSP单片机  位移传感器  PID控制器  神经网络
收稿时间:2019/1/24 0:00:00
修稿时间:2019/3/20 0:00:00

RESEARCH ON INTELLIGENT ELECTRO-HYDRAULIC SERVO CONTROL SYSTEM BASED ON SINGLE CHIP MICROCOMPUTER AND IMPROVED PID
LIU Cheng and WU Zhi-jun.RESEARCH ON INTELLIGENT ELECTRO-HYDRAULIC SERVO CONTROL SYSTEM BASED ON SINGLE CHIP MICROCOMPUTER AND IMPROVED PID[J].Journal of Jinggangshan University(Natural Sciences Edition),2019,40(4):72-76.
Authors:LIU Cheng and WU Zhi-jun
Affiliation:School of Automotive and Mechanical Engineering, Lu''an Vocational and Technical College, Lu''an, Anhui 237000, China and College of Mechanical and Vehicle Engineering, West Anhui University, Lu''an, Anhui 237000, China
Abstract:In order to control electro-hydraulic servo system quickly, accurately and smoothly, this paper presents an intelligent electro-hydraulic servo control system based on single chip computer and improved PID. By analyzing the main components of the electro-hydraulic servo system and according to the hydraulic control theory, the mathematical model of the electro-hydraulic servo valve and other mechanisms in the electro-hydraulic servo system is obtained. The MCU is used as the main controller to receive the real-time displacement value collected by the displacement sensor and control the opening of the electro-hydraulic servo valve according to the value. The controller is introducedand improved by the neural network algorithm to form the control strategy of the designed electro-hydraulic servo control system, so as to realize the intellectualization of the electro-hydraulic servo control system. The simulation results show that the proposed method can not only control the electro-hydraulic servo system more quickly and accurately, but also control the process more smoothly and has a better control effect.
Keywords:electro-hydraulic servo system  electro-hydraulic servo control  MSP single chip microcomputer  displacement sensor  PID controller  neural network
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