ADAPTIVE FEEDFORWARD CONTROL OF NONMINIMUM-PHASE STRUCTURAL SYSTEMS

被引:18
|
作者
VIPPERMAN, JS
BURDISSO, RA
机构
[1] Vibration and Acoustics Laboratory, Mechanical Engineering Department, Virginia Polytechnic Institute, Blacksburg
关键词
D O I
10.1006/jsvi.1995.0260
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
Adaptive feedforward control algorithms have been effectively applied to stationary disturbance rejection. For structural systems, the ideal feedforward compensator is a recursive filter which is a function of the transfer functions between the disturbance and control inputs and the error sensor output. Unfortunately, most control configurations result in a non-minimum phase control-path; even a collocated control actuator and error sensor will not necessarily produce a minimum phase control path in the discrete domain. Therefore, the common practice is to choose a suitable approximation of the ideal compensator. In particular, all-zero finite impulse response (FIR) filters are desirable because of their inherent stability for adaptive control approaches. However, for highly resonant systems, large order filters are required for broadband applications. In this work, a control configuration is investigated for controlling non-minimum phase lightly damped structural systems. The control approach uses low order FIR filters as feedforward compensators in a configuration that has one more control actuator than error sensors. The performance of the controller was experimentally evaluated on a simply supported plate under white noise excitation for a two-input, one-output (2I10) system. The results show excellent error signal reduction, attesting to the effectiveness of the method.
引用
收藏
页码:369 / 382
页数:14
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