An optimal robust Minimax LQG control of vibration of a flexible beam is studied in this paper. The first six modes of the beam in the frequency range of 0-800 Hz are selected for control purposes. Among these modes, three modes in the frequency range of 100-400 Hz are used for control, while the other three modes are left as the uncertainty of modeling. Both the model and the uncertainty are measured based on experimental data. The nominal model is identified from frequency response data and the uncertainty is presented by a frequency weighted multiplicative modeling method. For the augmented plant consisting of the nominal model and its accompanied uncertainty, a Minimax LQG controller is designed. A trade-off between robust stability and...
A comparison is made between three partial differential equation models for a flexible beam with dif...
Flexible structures are increasingly used in various applications such as aerospace, automotive and ...
An active vibration control system is proposed for suppressing the small amplitude random vibrations...
An optimal-robust Minimax LQG control of vibration on a simply supported flexible beam is presented ...
In this brief the design and analysis of an optimal robust minimax linear quadratic Gaussian (LQG) c...
In this paper identification and optimal robust Minimax-LQG control design are studied for active vi...
The active suppression of structural vibration is normally achieved by either feedforward or feedbac...
This paper addresses identification and robust control of vibration of a flexible plate attached to ...
This paper introduces a general and practical procedure for the design of high-performance and robus...
In this paper, we present the results of the controller design of a single flexible link using the H...
Summarization: A mathematical formulation and finite element model for the vibration suppression of ...
In this paper, a digital regulator is designed and experimentally implemented for a flexible beam ty...
This paper considers robust vibration control of uncertain flexible structures. It firstly uses fini...
A comparison is made between three partial differential equation models for a flexible beam with dif...
This paper deals with passive vibration control of structures exhibiting both long and short wavelen...
A comparison is made between three partial differential equation models for a flexible beam with dif...
Flexible structures are increasingly used in various applications such as aerospace, automotive and ...
An active vibration control system is proposed for suppressing the small amplitude random vibrations...
An optimal-robust Minimax LQG control of vibration on a simply supported flexible beam is presented ...
In this brief the design and analysis of an optimal robust minimax linear quadratic Gaussian (LQG) c...
In this paper identification and optimal robust Minimax-LQG control design are studied for active vi...
The active suppression of structural vibration is normally achieved by either feedforward or feedbac...
This paper addresses identification and robust control of vibration of a flexible plate attached to ...
This paper introduces a general and practical procedure for the design of high-performance and robus...
In this paper, we present the results of the controller design of a single flexible link using the H...
Summarization: A mathematical formulation and finite element model for the vibration suppression of ...
In this paper, a digital regulator is designed and experimentally implemented for a flexible beam ty...
This paper considers robust vibration control of uncertain flexible structures. It firstly uses fini...
A comparison is made between three partial differential equation models for a flexible beam with dif...
This paper deals with passive vibration control of structures exhibiting both long and short wavelen...
A comparison is made between three partial differential equation models for a flexible beam with dif...
Flexible structures are increasingly used in various applications such as aerospace, automotive and ...
An active vibration control system is proposed for suppressing the small amplitude random vibrations...