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  • In Jour Smart Sensing And Intelligent Systems

 

Research Article | 04-December-2011

FPGA BASED VIBRATION CONTROL OF A MASS VARYING TWO-DEGREE OF FREEDOM SYSTEM

spectrum vibration control. LabVIEW with real time suite was used for algorithm implementation and device control. To avoid sloshing in tanks at different water height a floating roof was used. Its effect on damping was also studied.

Mayand Pratap Singh, Prashant Kumar Tripathi, K.V Gangadharan

International Journal on Smart Sensing and Intelligent Systems, Volume 4 , ISSUE 4, 698–709

Research paper | 12-December-2017

EXPERIMENTAL STUDY ON VIBRATION CONTROL OF SHAPE MEMORY ALLOY ACTUATED FLEXIBLE BEAM

K. Dhanalakshmi, Aditya Avinash, M. Umapathy, M. Marimuthu

International Journal on Smart Sensing and Intelligent Systems, Volume 3 , ISSUE 2, 156–175

Research Article | 13-December-2017

Model identification and Smart structural vibration Control using ∞Hcontroller

M. Sridevi, P. Madhavasarma

International Journal on Smart Sensing and Intelligent Systems, Volume 3 , ISSUE 4, 655–671

Research Article | 01-September-2011

Vibration Analysis of Cantilever Smart Structure by using Piezoelectric Smart Material

K. B. Waghulde, Dr. Bimlesh Kumar

International Journal on Smart Sensing and Intelligent Systems, Volume 4 , ISSUE 3, 353–375

Research Article | 01-June-2017

OUTPUT BASED INPUT SHAPING FOR OPTIMAL CONTROL OF SINGLE LINK FLEXIBLE MANIPULATOR

quadratic regulator (LQR) and PID separately for position and residual vibration control. The Robustness of these control algorithms are tested by changing the payloads from 0g to30g, 50g and 70g in each case. Based on MATLAB simulation results and time response analysis, LQR-OBF outperformed the PID-OBF in both tracking and vibration reduction.

Nura Musa Tahir, Sabo Miya Hassan, Zaharuddin Mohamed, Ahmed Garba Ibrahim

International Journal on Smart Sensing and Intelligent Systems, Volume 10 , ISSUE 2, 367–386

Article | 03-November-2017

SIMULTANEOUS PERIODIC OUTPUT FEEDBACK CONTROL FOR PIEZOELECTRIC ACTUATED STRUCTURES USING INTERVAL METHODS

In this paper, the problem of modeling, output feedback control design and the experimental implementation for the vibration control of smart cantilever beam with parameter uncertainties represented in interval form is addressed. The interval model of the system is obtained by introducing variation in the parameter of the identified model. However, Uncertainties are assumed in the model, identified through on line recursive least square parameter estimation. The control and identification

S. Neduncheliyan, M. Umapathy, D. Ezhilarasi

International Journal on Smart Sensing and Intelligent Systems, Volume 2 , ISSUE 3, 417–431

research-article | 12-August-2020

Dynamical analysis and controllers performance evaluation for single degree-of-freedom system

  = 1.5. FLC Velocity and displacement of the SDOF system were taken as input to the fuzzy controller and the actuation force was output, whereas fuzzy logic-based control system was used in the nonlinear active vibration control system. Now, as shown in Figure 3 that clarifies the system of MSD with FLC, five membership function in the first input and five membership function in the second input so that (25 rules) was designed as FLC in addition to, five membership function in the output. These all

Ivan Isho Gorial

International Journal on Smart Sensing and Intelligent Systems, Volume 13 , ISSUE 1, 1–12

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