EMBEDDED NAVIGATION SYSTEM OF MECHATRONICS ROBOT BY FUZZY CONTROL ALGORITHM

被引:0
|
作者
Wang Y. [1 ]
Zhao Y. [2 ]
Liang M. [1 ]
Zhang K. [1 ]
机构
[1] Henan High-speed Railway Operation and Maintenance Engineering Research Center, Henan, Zhengzhou
[2] Zhongyuan University of Technology, Henan, Zhengzhou
关键词
Fuzzy control; Mechatronics; Navigation system; Path planning; Robot;
D O I
10.17683/ijomam/issue14.16
中图分类号
学科分类号
摘要
With the development of mechatronics robot intelligence and autonomy, automatic obstacle avoidance and path planning has become the core of the current robot navigation system research. This research aims to solve the problems of complex path planning and poor parameter strain in ultrasonic array navigation systems. Firstly, the research status of the mobile robot is introduced, and a new embedded navigation system based on ultrasonic array technology is designed. Then, the fuzzy control algorithm is introduced, and a new Positive/Negative (P/N) local path planning algorithm based on fuzzy control is proposed. The normal rule is used to make the robot move toward the target point, in which the robot avoids obstacles through negative rules. The complexity of the fuzzy system is reduced through binary negative rules. Then, the precise output is obtained through the path decision formula to realize the local path planning system of the mechatronic robot. Finally, the simulation results verify the effectiveness of the improved algorithm. Based on the joint simulation experiment platform of Simulink and Robot Operating System (ROS), the excellent performance of the proposed embedded navigation system has been verified. The new P/N local path planning algorithm of fuzzy control can make the running track more accurate and smoother by optimizing the path. The new embedded navigation system can provide theoretical analysis and practical reference for developing an electromechanical robot navigation system. © 2023, Cefin Publishing House. All rights reserved.
引用
收藏
页码:128 / 136
页数:8
相关论文
共 50 条
  • [1] THE ROLE OF A FUZZY PID ON A MECHATRONICS CONTROL SYSTEM OF AN INDUSTRIAL ROBOT
    Ben Y.
    International Journal of Mechatronics and Applied Mechanics, 2021, 2 (10): : 145 - 153
  • [2] Embedded Control System Design for Autonomous Navigation Mobile Robot
    Wei Wu
    Geng HaiFei
    Guo Yan
    2009 ASIA-PACIFIC CONFERENCE ON INFORMATION PROCESSING (APCIP 2009), VOL 1, PROCEEDINGS, 2009, : 200 - 203
  • [3] Fuzzy navigation of robot system
    Lakov, Dimitar
    Vasilev, Stanislav
    PROCEEDINGS OF THE 9TH WSEAS INTERNATIONAL CONFERENCE ON FUZZY SYSTEMS: ADVANCED TOPICS ON FUZZY SYSTEMS, 2008, : 126 - 131
  • [4] Robot Navigation Based on Fuzzy RL Algorithm
    Duan, Yong
    Cui, Baoxia
    Yang, Huaiqing
    ADVANCES IN NEURAL NETWORKS - ISNN 2008, PT I, PROCEEDINGS, 2008, 5263 : 391 - 399
  • [5] An intelligent robot navigation system based on neuro-fuzzy control
    Hegazy, OF
    Fahmy, AA
    El Refaie, OM
    PRICAI 2004: TRENDS IN ARTIFICIAL INTELLIGENCE, PROCEEDINGS, 2004, 3157 : 1017 - 1018
  • [6] Embedded vision system for mobile robot navigation
    Sawasaki, Naoyuki
    Nakao, Manabu
    Yamamoto, Yoshinobu
    Okabayashi, Keiju
    2006 IEEE INTERNATIONAL CONFERENCE ON ROBOTICS AND AUTOMATION (ICRA), VOLS 1-10, 2006, : 2693 - +
  • [7] Centralized fuzzy behavior control for robot navigation
    Selekwa, MF
    Collins, EG
    PROCEEDINGS OF THE 2003 IEEE INTERNATIONAL SYMPOSIUM ON INTELLIGENT CONTROL, 2003, : 602 - 607
  • [8] Fuzzy Based Autonomous Robot Navigation System
    Joshi, Maulin M.
    Zaveri, Mukesh A.
    2009 ANNUAL IEEE INDIA CONFERENCE (INDICON 2009), 2009, : 189 - +
  • [9] Mobile Robot Navigation based on Shared Control of Fuzzy Discrete Event System
    Zhang, Lin
    Liu, Rong
    Wang, Yong-xuan
    Qin, Kai-rong
    11TH IEEE INTERNATIONAL CONFERENCE ON CONTROL AND AUTOMATION (ICCA), 2014, : 711 - 715
  • [10] Bacterial Evolutionary Algorithm-Trained Interpolative Fuzzy System for Mobile Robot Navigation
    Szili, Ferenc Adam
    Botzheim, Janos
    Nagy, Balazs
    ELECTRONICS, 2022, 11 (11)