Self-Tuning PID Controller for Active Suspension System with Hydraulic Actuator

被引:0
|
作者
Ab Talib, Mat Hussin [1 ]
Darus, Intan Z. Mat [1 ]
机构
[1] Univ Teknol Malaysia, Fac Mech Engn, Dept Appl Mech, Johor Baharu, Malaysia
关键词
active suspension system; PID controller; heuristic; Ziegler Nichols; iterative learning algorithm;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper investigated the performance of PID controller for active suspension system. A half car model has been simulated by using an analytical model within Matlab SIMULINK environment. Three different road disturbances, namely, the bump and hole, sine and random input have been applied to disturb the suspension system. Based on these three road disturbances, the performances of passive and active suspension system were investigated. Moreover, for active suspension system, hydraulic actuator was included in the simulation and PID controller was introduced. Three tuning methods namely heuristic tuning, Ziegler-Nichols (ZN) tuning, and iterative learning algorithm (ILA) were used to obtain the optimum value of the PID controller parameters. A comparative study was carried out between active and passive suspension systems, and these three methods of tuning the PID controller. The active suspension system has been proven to perform better than the passive suspension system provided the PID controller parameters are tuned properly. Also, in this investigation, the comparative assessment indicated that the PID controller tuned by the iterative learning algorithm for active suspension system with hydraulic actuator has performed better than the other two tuning algorithms.
引用
收藏
页数:6
相关论文
共 50 条
  • [1] APPLICATION OF SELF-TUNING FUZZY PID CONTROLLER ON INDUSTRIAL HYDRAULIC ACTUATOR USING SYSTEM IDENTIFICATION APPROACH
    Zulfatman
    Rahmat, M. F.
    [J]. INTERNATIONAL JOURNAL ON SMART SENSING AND INTELLIGENT SYSTEMS, 2009, 2 (02): : 246 - 261
  • [2] An optimal self-tuning controller for an active suspension
    Yu, F
    Crolla, DA
    [J]. VEHICLE SYSTEM DYNAMICS, 1998, 29 (01) : 51 - 65
  • [3] Self-tuning PID controller design using fuzzy logic for half car active suspension system
    Khodadadi H.
    Ghadiri H.
    [J]. International Journal of Dynamics and Control, 2018, 6 (1) : 224 - 232
  • [4] Speed control of Hydraulic elevator by using PID controller and self-tuning fuzzy PID controller
    Xu, Xian
    Wang, Qingling
    [J]. 2017 32ND YOUTH ACADEMIC ANNUAL CONFERENCE OF CHINESE ASSOCIATION OF AUTOMATION (YAC), 2017, : 812 - 817
  • [5] A self-tuning PID controller based on expert system
    Xing, JC
    Wang, P
    Wang, L
    [J]. NEW TECHNOLOGIES FOR COMPUTER CONTROL 2001, 2002, : 479 - 483
  • [6] Self-tuning PID Controller for Activated Sludge System
    Choo, Huong Pei
    Sahlan, Shafishuhaza
    Eek, Rickey Ting Pek
    Wahab, Norhaliza Abdul
    [J]. PROCEEDINGS OF THE 2013 IEEE 8TH CONFERENCE ON INDUSTRIAL ELECTRONICS AND APPLICATIONS (ICIEA), 2013, : 16 - 21
  • [7] A MULTIVARIABLE SELF-TUNING PID CONTROLLER
    YUSOF, R
    OMATU, S
    [J]. INTERNATIONAL JOURNAL OF CONTROL, 1993, 57 (06) : 1387 - 1403
  • [8] New self-tuning PID controller
    Peng, Hui
    Zeng, Qingdong
    [J]. Dianqi Zidonghua/Electrical Automation, 19 (04): : 10 - 11
  • [9] Self-tuning PID/I controller
    A. G. Aleksandrov
    M. V. Palenov
    [J]. Automation and Remote Control, 2011, 72 : 2010 - 2022
  • [10] Self-tuning PID/I Controller
    Aleksandrov, A. G.
    Palenov, M. V.
    [J]. AUTOMATION AND REMOTE CONTROL, 2011, 72 (10) : 2010 - 2022