<p>This paper presents the extraction of frequency responses of a magnetic levitated open-loop unstable plant operating in a closed-loop, employing the Empirical Transfer Function Estimate (ETFE) approach. Frequency responses of the closed-loop transfer function, loop gain, and the plant are obtained by injecting an eigenfrequency-rich excitation signal. Consequently, measuring the levitated beam’s displacement between a pair of electromagnets. The electro-mechanical model derived via the first principle approach is compared with the estimated frequency response. The experimentally obtained open-loop gain, capturing important unmodelled system dynamics, will be utilized for robust control design via loop-shaping. Thus, the proposed approach is amenable to robust control design without relying on complex control algorithms.</p>

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Frequency Response Analysis of an Experimental Magnetic Levitation Test Bed

  • S. M. Ahmad

摘要

This paper presents the extraction of frequency responses of a magnetic levitated open-loop unstable plant operating in a closed-loop, employing the Empirical Transfer Function Estimate (ETFE) approach. Frequency responses of the closed-loop transfer function, loop gain, and the plant are obtained by injecting an eigenfrequency-rich excitation signal. Consequently, measuring the levitated beam’s displacement between a pair of electromagnets. The electro-mechanical model derived via the first principle approach is compared with the estimated frequency response. The experimentally obtained open-loop gain, capturing important unmodelled system dynamics, will be utilized for robust control design via loop-shaping. Thus, the proposed approach is amenable to robust control design without relying on complex control algorithms.