Frequency response function (FRF) identification is often used as a basis for control systems design and as a starting point for subsequent parametric system identification. The aim of this paper is to develop a multiple-input multiple-output (MIMO) local parametric modeling approach for FRF identification of lightly damped mechanical systems with improved speed and accuracy. The proposed method is based on local rational models, which can efficiently handle the lightly-damped resonant dynamics. A key aspect herein is the freedom in the multivariable rational model parametrizations. Several choices for such multivariable rational model parametrizations are proposed and investigated. For systems with many inputs and outputs the required numb...
Frequency response function (FRF) identification is a key step in experimental modeling of many appl...
Accurate uncertainty modeling is crucial in robust vibration controller design. A novel uncertainty ...
Accurate uncertainty modeling is crucial in robust vibration controller design. A novel uncertainty ...
Frequency response function (FRF) identification is often used as a basis for control systems design...
Frequency response function (FRF) identification is often used as a basis for control systems design...
Frequency response function (FRF) identification is often used as a basis for control systems design...
Frequency response function (FRF) identification is often used as a basis for control systems design...
\u3cp\u3eFrequency response function (FRF) identification is often used as a basis for control syste...
A key step in experimental modeling of mechatronic systems is Frequency Response Function (FRF) iden...
\u3cp\u3eA key step in experimental modeling of mechatronic systems is Frequency Response Function (...
A key step in experimental modeling of mechatronic systems is Frequency Response Function (FRF) iden...
A key step in experimental modeling of mechatronic systems is Frequency Response Function (FRF) iden...
A key step in experimental modeling of mechatronic systems is Frequency Response Function (FRF) iden...
Accurate uncertainty modeling is crucial in robust vibration controller design. A novel uncertainty ...
Accurate uncertainty modeling is crucial in robust vibration controller design. A novel uncertainty ...
Frequency response function (FRF) identification is a key step in experimental modeling of many appl...
Accurate uncertainty modeling is crucial in robust vibration controller design. A novel uncertainty ...
Accurate uncertainty modeling is crucial in robust vibration controller design. A novel uncertainty ...
Frequency response function (FRF) identification is often used as a basis for control systems design...
Frequency response function (FRF) identification is often used as a basis for control systems design...
Frequency response function (FRF) identification is often used as a basis for control systems design...
Frequency response function (FRF) identification is often used as a basis for control systems design...
\u3cp\u3eFrequency response function (FRF) identification is often used as a basis for control syste...
A key step in experimental modeling of mechatronic systems is Frequency Response Function (FRF) iden...
\u3cp\u3eA key step in experimental modeling of mechatronic systems is Frequency Response Function (...
A key step in experimental modeling of mechatronic systems is Frequency Response Function (FRF) iden...
A key step in experimental modeling of mechatronic systems is Frequency Response Function (FRF) iden...
A key step in experimental modeling of mechatronic systems is Frequency Response Function (FRF) iden...
Accurate uncertainty modeling is crucial in robust vibration controller design. A novel uncertainty ...
Accurate uncertainty modeling is crucial in robust vibration controller design. A novel uncertainty ...
Frequency response function (FRF) identification is a key step in experimental modeling of many appl...
Accurate uncertainty modeling is crucial in robust vibration controller design. A novel uncertainty ...
Accurate uncertainty modeling is crucial in robust vibration controller design. A novel uncertainty ...