• DocumentCode
    3184195
  • Title

    A novel approach based on choquet fuzzy integral controller for line of sight stabilization application

  • Author

    Singh, Ravindra ; Hanumandlu, M. ; Khatoon, Shahida ; Ibraheem

  • Author_Institution
    LASTEC, DRDO, Delhi, India
  • fYear
    2011
  • fDate
    11-14 Dec. 2011
  • Firstpage
    1265
  • Lastpage
    1270
  • Abstract
    The performance of an electro-optical fire control system (EOFCS), mounted on a mobile platform, decreases exponentially with increase in the disturbance on the line of sight (LOS).To overcome this problem, LOS stabilization control based on gyro stabilized platform is required to isolate the LOS from the movement and vibration of carrier and ensure pointing, tracking and firing for target in EOFCS. Fuzzy-knowledge-based-controller (FKBC) design presents a good methodology to stabilize the line of sight against disturbances and nonlinearities present in the system, but tuning of input and output membership function parameters is quite a complex process. To overcome this, a choquet fuzzy integral based control algorithm is developed for this servo system with nonlinear property and some uncertainties. In this approach, q-measure is estimated to simplify the computation of λ-measure that aggregates the information from the weighted inputs. The output of fuzzy rules which are formulated by defining their consequent as the product of weighted input and a fuzzy measure is computed in the form of Choquet fuzzy integral. The performance of time response parameters and residual jitter on LOS obtained by choquet fuzzy control is presented here.
  • Keywords
    control nonlinearities; control system synthesis; electro-optical devices; fuzzy control; jitter; stability; uncertain systems; vibration control; Choquet fuzzy integral based control algorithm; LOS stabilization control; carrier vibration; complex process; electro-optical fire control system; fuzzy rule; fuzzy-knowledge-based-controller design; gyrostabilized platform; line of sight stabilization application; membership function parameter; mobile platform; nonlinear property; residual jitter; servo system; time response parameter; Communications technology; Control systems; Fuzzy logic; Jitter; Mathematical model; Steady-state; Torque; λ-measure; Bandwidth (B.W); Choquet Fuzzy Integral; Electro-optical fire control system (EOFCS); Fuzzy Controller; Line of sight (LOS); q-measure;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Information and Communication Technologies (WICT), 2011 World Congress on
  • Conference_Location
    Mumbai
  • Print_ISBN
    978-1-4673-0127-5
  • Type

    conf

  • DOI
    10.1109/WICT.2011.6141430
  • Filename
    6141430