On the Spillover of Steady State Unbalance Response of a Rotating Shaft Under Velocity Feedback

Author:

Yang S. M.1,Sheu G. J.2

Affiliation:

1. Institute of Aeronautics and Astronautics, National Cheng Kung University, Taiwan, R.O.C.

2. Department of Electrical Engineering, Hsiuping Institute of Technology, Taiwan 412, R.O.C.

Abstract

It has been stated that a uniform rotating shaft in the Rayleigh beam model has only a finite number of critical speeds and precession modes. This paper presents a controller design of optimal sensor/actuator location and feedback gain for steady state unbalance response of a rotating shaft operating in a speed range. For systems under order-limit constraint such that only part of the precession modes can be included in the reduced-order controller design, the system stability can be evaluated. The example of a hinged-hinged rotating shaft is employed to illustrate the controller design of velocity feedback in collocated and noncollocated senor/actuator configuration. Analyses show that the reduced-order controller not only guarantees the closed loop system stability but also effectively suppress the unbalance response.

Publisher

ASME International

Subject

General Engineering

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