Design of a single-input fuzzy logic controller and its properties

被引:111
|
作者
Choi, BJ
Kwak, SW
Kim, BK
机构
[1] Korea Adv Inst Sci & Technol, Dept Elect Engn, Taejon 305701, South Korea
[2] Joong Kyoung Tech Coll, Dept Elect Engn, Taejon 300100, South Korea
关键词
fuzzy logic control; sliding mode control; signed distance; Lyapunov stability;
D O I
10.1016/S0165-0114(97)00283-2
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
We suggest a simple but powerful FLC (Fuzzy Logic Controller) design method using a single fuzzy input variable, which is equivalent to the pseudo sliding mode controller. Input variables of conventional FLCs are mostly the error e and the change-of-error (e) over dot regardless of the complexity of controlled plants. A rule table is then constructed in a two-dimensional input space. The output of fuzzy inference is applied to the plant as the control input u or the change of control input Delta u. This scheme came from concepts of linear PD (proportional-derivative) and PI (proportional-integral) controllers. We found that rule tables of most FLCs have skew-symmetry property, and the absolute magnitude of the control input \u\ or \Delta u\ is proportional to the distance from its main diagonal line in the normalized input space. Considering these facts, we derive a new variable called the signed distance, which is a sole fuzzy input variable in our simple FLC called single-input FLC (S-FLC). The S-FLC has many advantages: The total number of rules is greatly reduced compared to two-dimensional FLCs, and hence, generations and tuning of control rules are easy. Control performance is nearly the same as that of conventional FLCs. We also show that this S-FLC is equivalent to the pseudo SMC (sliding mode controller), and hence, the stability is guaranteed using the Lyapunov stability. The performance of S-FLC is revealed via computer simulations using a nonlinear plant. (C) 1999 Elsevier Science B.V. All rights reserved.
引用
下载
收藏
页码:299 / 308
页数:10
相关论文
共 50 条
  • [1] Decoupled fuzzy controller design with single-input fuzzy logic
    Chen, SY
    Yu, FM
    Chung, HY
    FUZZY SETS AND SYSTEMS, 2002, 129 (03) : 335 - 342
  • [2] Design and stability analysis of single-input fuzzy logic controller
    Choi, BJ
    Kwak, SW
    Kim, BK
    IEEE TRANSACTIONS ON SYSTEMS MAN AND CYBERNETICS PART B-CYBERNETICS, 2000, 30 (02): : 303 - 309
  • [3] On the absolute stability of the single-input fuzzy logic controller
    Choi, BJ
    JOINT 9TH IFSA WORLD CONGRESS AND 20TH NAFIPS INTERNATIONAL CONFERENCE, PROCEEDINGS, VOLS. 1-5, 2001, : 1277 - 1281
  • [4] Design of Single-Input Fuzzy Logic Controller for Spatial Control of Advanced Heavy Water Reactor
    Londhe, P. S.
    Patre, B. M.
    Tiwari, A. P.
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2014, 61 (02) : 901 - 911
  • [5] Design of single-input fuzzy logic control-power system stabilizer
    Lee, YS
    Lin, CI
    Hsu, KL
    Chuang, CF
    2002 IEEE REGION 10 CONFERENCE ON COMPUTERS, COMMUNICATIONS, CONTROL AND POWER ENGINEERING, VOLS I-III, PROCEEDINGS, 2002, : 1901 - 1904
  • [6] Design and Implementation of a Single Input Fuzzy Logic Controller for Boost Converters
    Salam, Zainal
    Taeed, Fazel
    Ayob, Shahrin Md.
    JOURNAL OF POWER ELECTRONICS, 2011, 11 (04) : 542 - 550
  • [7] DESIGN OF OPTIMAL CONTROLLER FOR LINEAR SINGLE-INPUT SYSTEM
    MIN, LC
    HABIBULLAH, BS
    ELECTRONICS LETTERS, 1979, 15 (20) : 660 - 661
  • [8] Design of Single Input Fuzzy Logic Controller for Shunt Active Power Filter
    Suresh, Dhanavath
    Singh, Sajjan Pal
    IETE JOURNAL OF RESEARCH, 2015, 61 (05) : 500 - 509
  • [9] Spiral Dive Control of Underactuated AUV Based on a Single-Input Fractional-Order Fuzzy Logic Controller
    Cui, Zhiyu
    Liu, Lu
    Zhu, Boyu
    Zhang, Lichuan
    Yu, Yang
    Zhao, Zhexuan
    Li, Shiyuan
    Liu, Mingwei
    FRACTAL AND FRACTIONAL, 2022, 6 (09)
  • [10] Single-Input Pinning Controller Design for Reachability of Boolean Networks
    Li, Fangfei
    Yan, Huaicheng
    Karimi, Hamid Reza
    IEEE TRANSACTIONS ON NEURAL NETWORKS AND LEARNING SYSTEMS, 2018, 29 (07) : 3264 - 3269