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    Item type:Publication,
    The design of PID controller for track following control of hard disk drive using Coefficient Diagram Method
    (2011-12-01)
    Chaoraingern, Jutarut
    ;
    Vaidee, Worapon
    ;
    Trisuwannawat, Thanit
    ;
    Numsomran, Arjin
    ;
    Tipsuwanporn, Vittaya
    This paper presents the design of PID controller for track following control of hard disk drive using Coefficient Diagram Method (CDM). For this reason, Track following control of hard disk drive process has many disturbances from internal and external sources, so determining satisfactory controller parameters to stabilize control system and satisfying response specification is difficult. The proposed PID controller design using Coefficient Diagram Method (CDM) based on proper choosing the coefficients of the characteristic transfer function of the closed loop control system in accordance with stability index and equivalent time constant is applying an uncomplicated and convenience technique to controller design of Track following control in hard disk drive process. Matlab simulation results shown that CDM design is fairly stable and robust whilst giving the convenience in controller's parameters adjustment. © 2011 ICROS.
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    Item type:Publication,
    The design of PID controller for track following control of hard disk drive using coefficient diagram method
    (2011-01-01)
    Chaoraingern, Jutarut
    ;
    Vaidee, Worapon
    ;
    Trisuwannawat, Thanit
    ;
    Tipsuwanporn, Vittaya
    ;
    Numsomran, Arjin
    This paper presents the design of PID controller for track following control of hard disk drive using Coefficient Diagram Method (CDM). For this reason, Track following control of hard disk drive process has many disturbances from internal and external sources, so determining satisfactory controller parameters to stabilize control system and satisfy response specification is difficult. The proposed PID controller design using Coefficient Diagram Method (CDM) based on proper choosing the coefficients of the characteristic transfer function of the closed loop control system in accordance with stability index and equivalent time constant is an uncomplicated and convenience technique for applying to Track following control in hard disk drive process. Matlab simulation results shown that PID controller using CDM technique is fairly stable and robust whilst give the convenience in controller's parameters adjustment. © 2011 SICE.
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    Item type:Publication,
    Smith predictor design by CDM for temperature control system
    (2010-12-01)
    Puawade, Pruetti
    ;
    Boonpranchoo, Vichitpon
    ;
    Tipsuwannaporn, Vittaya
    ;
    Numsomran, Arjin
    Smith Predictor control is theoretically a good solution to the problem of controlling the time delay systems. However, it seldom gets use because it is almost impossible to find out a precise mathematical model of the practical system and very sensitive to uncertain system with variable time-delay. In this paper is concerned with a design method of smith predictor for temperature control system by Coefficient Diagram Method (CDM). The simulation results show that the control system with smith predictor design by CDM is stable and robust whilst giving the desired time domain system performance. ©ICROS.
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    Item type:Publication,
    Smith predictor design by CDM for temperature control system
    (2007-12-01)
    Thuengsripan, Santi
    ;
    Suksri, Tianchai
    ;
    Numsomran, Arjin
    ;
    Kongratana, Viriya
    ;
    Roengruen, Prapas
    Smith Predictor control is theoretically a good solution to the problem of controlling the time delay systems. However, it seldom gets use because it is almost impossible to find out a precise mathematical model of the practical system and very sensitive to uncertain system with variable time-delay. In this paper is concerned, with a design method, of smith predictor for temperature control system by Coefficient Diagram Method (CDM). The simulation results show that the control system with smith predictor design by CDM is stable and robust whilst giving the desired time domain system performance. © ICROS.