In this paper, a nonlinear auto regressive with eXegenous input (NARX) model of nonlinear systems, where the physical parameters of interest for the system design appear explicitly as coefficients in the model, is introduced. The model is referred to as the NARX model with parameters of interest for design (NARX-M-for-D). The output frequency response function (OFRF) in terms of these physical parameters is then introduced for the NARX-M-for-D, and an efficient algorithm is derived to determine the OFRF so as to facilitate the design of nonlinear systems in the frequency domain. Moreover, a general procedure for the design of the physical parameters of the NARXM-for-D in the frequency domain is proposed, which has the potential ...
Nonlinear vibration control systems (both passive and active) always involve parameter design and pe...
The characteristics of generalised frequency response functions (GFRF's) of nonlinear systems in hig...
In this paper, an algorithm is derived for the determination of the output frequency ranges of nonli...
Nonlinear system analyses have been widely applied in engineering practice, where the frequency doma...
Nonlinear system analyses have been widely applied in engineering practice, where the frequency doma...
In the present study, a new concept known as the Associated Output Frequency Response Function (AOFR...
The Nonlinear Output Frequency Response Functions (NOFRFs) are a concept which provides a new extens...
This book is a systematic summary of some new advances in the area of nonlinear analysis and design ...
This paper deals with the frequency domain analysis of nonlinear systems based on some recently deve...
New results about the bound characteristics of both the generalised frequency response functions (GF...
Analysis of nonlinear systems has been studied extensively. Based on some recently developed results...
The characteristic of the frequency response functions of nonlinear systems can be revealed and anal...
Nonlinear systems with exponential-type nonlinearity can be widely seen in system modeling (e.g., ne...
The output spectrum of a linear dynamic system is equal to the input spectrum multiplied by the syst...
The frequency domain methods tor linear systems are well accepted by engineers and have been widely ...
Nonlinear vibration control systems (both passive and active) always involve parameter design and pe...
The characteristics of generalised frequency response functions (GFRF's) of nonlinear systems in hig...
In this paper, an algorithm is derived for the determination of the output frequency ranges of nonli...
Nonlinear system analyses have been widely applied in engineering practice, where the frequency doma...
Nonlinear system analyses have been widely applied in engineering practice, where the frequency doma...
In the present study, a new concept known as the Associated Output Frequency Response Function (AOFR...
The Nonlinear Output Frequency Response Functions (NOFRFs) are a concept which provides a new extens...
This book is a systematic summary of some new advances in the area of nonlinear analysis and design ...
This paper deals with the frequency domain analysis of nonlinear systems based on some recently deve...
New results about the bound characteristics of both the generalised frequency response functions (GF...
Analysis of nonlinear systems has been studied extensively. Based on some recently developed results...
The characteristic of the frequency response functions of nonlinear systems can be revealed and anal...
Nonlinear systems with exponential-type nonlinearity can be widely seen in system modeling (e.g., ne...
The output spectrum of a linear dynamic system is equal to the input spectrum multiplied by the syst...
The frequency domain methods tor linear systems are well accepted by engineers and have been widely ...
Nonlinear vibration control systems (both passive and active) always involve parameter design and pe...
The characteristics of generalised frequency response functions (GFRF's) of nonlinear systems in hig...
In this paper, an algorithm is derived for the determination of the output frequency ranges of nonli...