Please wait a minute...
吉林化工学院学报, 2022, 39(3): 95-99     https://doi.org/10.16039/j.cnki.cn22-1249.2022.03.018
  本期目录 | 过刊浏览 | 高级检索 |
配电网带电作业机器人机构配置与协调控制方法分析
陈欣欢
安徽职业技术学院 机电工程学院,安徽 合肥 230011
Analysis of Mechanism Configuration and Coordinated Control Method of Robots for Live Working in Distribution Network
CHEN Xinhuan
下载:  PDF (457KB) 
输出:  BibTeX | EndNote (RIS)      
摘要 

针对配电网高压作业效率低的缺点,研究应用于作业过程中的机器人机构配置以及协调控制方法。机器人包括电源系统、障碍跨越机构、自救传感器系统以及自锁轮式爬升机构等,利用模糊PID控制器实现带电作业机器人的协调控制,模糊PID控制器将误差以及误差变化率作为输出,利用模糊控制规则实时调整PID参数,通过不同运行时刻的控制参数自整定提升控制效果,完成配电网带电作业机器人机构配置与协调控制方法。实验结果表明,输出信号在100ms内稳定至固定区间,机器人成功完成绝缘子串更换等高压作业,超调小,响应速度快。

服务
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章
陈欣欢
关键词:  配电网  带电作业  机器人  机构配置  协调控制  模糊控制规则     
Abstract: 

Aiming at the low efficiency of high-voltage operation in distribution network, the robot mechanism configuration and coordinated control method applied in the operation process are studied. The robot includes power supply system, obstacle crossing mechanism, self rescue sensor system and self-locking wheel climbing mechanism. The fuzzy PID controller is used to realize the coordinated control of live working robot. The fuzzy PID controller takes the error and error change rate as the output, and uses the fuzzy control rules to adjust the PID parameters in real time, Through the self-tuning of control parameters at different operation times to improve the control effect, the mechanism configuration and coordinated control method of live working robot in distribution network are completed. The experimental results show that the output signal is stable to a fixed range within 100ms, and the robot successfully completes high-voltage operations such as insulator string replacement, with small overshoot and fast response speed.

Key words:  Distribution network    Live work    Robots    Mechanism configuration    Coordinated control    Fuzzy control rules
               出版日期:  2022-03-25      发布日期:  2022-03-25      整期出版日期:  2022-03-25
ZTFLH:  TP242  
引用本文:    
陈欣欢. 配电网带电作业机器人机构配置与协调控制方法分析 [J]. 吉林化工学院学报, 2022, 39(3): 95-99.
CHEN Xinhuan. Analysis of Mechanism Configuration and Coordinated Control Method of Robots for Live Working in Distribution Network . Journal of Jilin Institute of Chemical Technology, 2022, 39(3): 95-99.
链接本文:  
http://xuebao.jlict.edu.cn/CN/10.16039/j.cnki.cn22-1249.2022.03.018  或          http://xuebao.jlict.edu.cn/CN/Y2022/V39/I3/95
[1] 朱建军, 王明园, 张博文. 基于ROS的轮式机器人建模方法与仿真研究 [J]. 吉林化工学院学报, 2021, 38(3): 61-65.
[2] 刘兴德, 周海宇, 靳曦. L型板抓取柔性机械手的设计 [J]. 吉林化工学院学报, 2021, 38(3): 13-15.
[3] 高兴泉, 丁三毛, 黄东冬, 刘志成, 肖新宇. 一种轮式移动机器人滑模轨迹跟踪控制器设计及其参数优化方法 [J]. 吉林化工学院学报, 2021, 38(1): 47-51.
[4] 王影, 徐姣姣, 刘麒, 李宝华, 苟垚, 张野. 基于STM32温湿度采集的播种机器人控制系统设计 [J]. 吉林化工学院学报, 2020, 37(11): 9-16.
[5] 刘通, 吕硕, 温浩, 陈雪. 高层建筑外墙壁喷涂机器人的机械结构设计 [J]. 吉林化工学院学报, 2019, 36(9): 22-24.
[6] 王影, 梁凯, 刘麒, 李硕, 苟垚, 李宝华, 刘锦然. 基于Zigbee网络的智能播种机器人关键技术研究 [J]. 吉林化工学院学报, 2019, 36(7): 48-51.
[7] 刘齐, 孙国栋. 气动柔性关节六足机器人腿关节提升机构设计与仿真 [J]. 吉林化工学院学报, 2019, 36(7): 36-39.
[8] 宫立达, 李智敏. 基于神经网络的机器人控制精度优化方法与技术研究 [J]. 吉林化工学院学报, 2019, 36(5): 35-37.
[9] 李云红, 张欢欢, 陈锦妮, 廉继红, 郭家桢, 贾凯莉, 李力. 人工智能技术迅猛发展背景下机器人工程专业人才培养探索1 [J]. 吉林化工学院学报, 2019, 36(12): 10-14.
[10] 周莉, 李研. 空间平行四边形索环牵引并联机器人设计与仿真分析 [J]. 吉林化工学院学报, 2019, 36(11): 90-94.
[11] 曲永印, 艾学忠, 高兴泉, 刘麒. 工业机器人发展现状及地方工科院校一体化育人体系建设思路[J]. 吉林化工学院学报, 2018, 35(7): 1-7.
[12] 刘荣辉, 耿德旭, 刘 齐. 气动柔性关节六足机器人结构设计与步态实验[J]. 吉林化工学院学报, 2018, 35(1): 23-27.
[1] . [J]. Journal of Jilin Institute of Chemical Technology, 2018, 35(9): 0 .
[2] . [J]. Journal of Jilin Institute of Chemical Technology, 2018, 35(9): 0 .
[3] SHAO Bao-li, LU Da, ZHAO Dong-hui. The Application of Dimensional Analysis in the Physical Quantity Conversion between Physical System and Numerical System [J]. Journal of Jilin Institute of Chemical Technology, 2018, 35(9): 1 -3 .
[4] ZHANG Jian, ZHAO Xiang, QU Bo, WU Qi, LIU Yu-tong, LI Yu-shi, LIU Qun. Application of Phosphorus-sulfur-nitrogen Composite Flame Retardant in Cotton Fabric [J]. Journal of Jilin Institute of Chemical Technology, 2018, 35(9): 4 -7 .
[5] WU Ping, REN Hong, LU Fei, WEI Qingling. A Functional Material on Recognition of Zn(II) ions based on the New Azo Compound [J]. Journal of Jilin Institute of Chemical Technology, 2018, 35(9): 8 -10 .
[6] YANG Yan-jun, WANG Ya-hong, Yang Xiu-dong. Process Aptimization of Surfactant Assisted Extraction of Total Polyphenols from Kyllinga Brevifolia Rottb [J]. Journal of Jilin Institute of Chemical Technology, 2018, 35(9): 11 -15 .
[7] LIU Jin-lu, LEI Yong-ping, WANG xiao-lin, ZHONG fang-li. Study on the  Purification Method of Total Saponins fromFruit of Rosa Davuvrica Pall. and its  Purification Method [J]. Journal of Jilin Institute of Chemical Technology, 2018, 35(9): 16 -23 .
[8] SONG Jian-gang, ZHONG Fang-li, WANG Xiao-lin, LIN Yu. Study on Extraction of Anthocyanin from Aronia melanocarpa Fruit by Ionic liquid Ultrasound Assisted [J]. Journal of Jilin Institute of Chemical Technology, 2018, 35(9): 24 -31 .
[9] TAN Li-hui, TAN Hong-wu. The Crashworthiness Analysis of different Cross-Section Thin-Walled Components [J]. Journal of Jilin Institute of Chemical Technology, 2018, 35(9): 32 -35 .
[10] YU Wen-xin, ZHENG Kai, WANG Li-hui, LIU Hai-bo, Wang Jian-xin. The Influence of Magnetostrictive Transducer Radiation Plate material on Radiation Sound Field Distribution [J]. Journal of Jilin Institute of Chemical Technology, 2018, 35(9): 36 -40 .
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed