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IIR filtering based adaptive active vibration control methodology with online secondary path modeling using PZT actuators

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English

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Abstract

Structural vibrations is a major cause for noise problems, discomfort and mechanical failures in aerospace, Automotive and marine systems, which are mainly composed of plate-like structures. in order to reduce structural vibrations on these structures, Active vibration control (aVC) is an effective approach. adaptive filtering methodologies are preferred in aVC due to their ability to adjust themselves for varying dynamics of the structure during the operation. the filtered-X LMS (FXLMS) algorithm is a simple adaptive filtering algorithm widely implemented in active control applications. Proper implementation of FXLMS requires availability of a reference signal to mimic the disturbance and model of the dynamics between the control actuator and the error sensor, namely the secondary path. However, the controller output could interfere with the reference signal and the secondary path dynamics may change during the operation. This interference problem can be resolved by using an infinite impulse response (IIR) filter which considers feedback of the one or more previous control signals to the controller output and the changing secondary path dynamics can be updated using an online modeling technique. in this paper, IIR filtering based filtered-U LMS (FULMS) controller is combined with online secondary path modeling algorithm to suppress the vibrations of a plate-like structure. the results are validated through numerical and experimental studies. the results show that the FULMS with online secondary path modeling approach has more vibration rejection capabilities with higher convergence rate than the FXLMS counterpart.

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Smart Materials and Structures

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Iop Publishing Ltd

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Instruments, Instrumentation, Materials science

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