TY - CHAP
T1 - Representation, Approximation, and Identification
AU - Chen, Guanrong
PY - 2009/6
Y1 - 2009/6
N2 - This chapter describes mathematical representation, approximation, and identification of, in most cases, nonlinear systems. An ideal representation of a real system is generally impossible, so that system approximation becomes necessary in practice. Intuitively, approximation is always possible. However, the key issues are what kind of approximation is good, where the sense of “goodness” must first be defined, of course, and how to find such a good approximation. The fundamental issue in representing a physical system by a mathematical formulation, called a mathematical model, is its correct symbolization, accurate quantization, and strong ability to illustrate and reproduce important properties of the original system. A higher level mathematical model is needed to provide a qualitative and quantitative representation of the real physical circuit. Mathematical modeling via differential equations and via state-space descriptions are the most basic mathematical representation methods.
AB - This chapter describes mathematical representation, approximation, and identification of, in most cases, nonlinear systems. An ideal representation of a real system is generally impossible, so that system approximation becomes necessary in practice. Intuitively, approximation is always possible. However, the key issues are what kind of approximation is good, where the sense of “goodness” must first be defined, of course, and how to find such a good approximation. The fundamental issue in representing a physical system by a mathematical formulation, called a mathematical model, is its correct symbolization, accurate quantization, and strong ability to illustrate and reproduce important properties of the original system. A higher level mathematical model is needed to provide a qualitative and quantitative representation of the real physical circuit. Mathematical modeling via differential equations and via state-space descriptions are the most basic mathematical representation methods.
UR - https://www.scopus.com/pages/publications/84908539156
UR - https://www.scopus.com/record/pubmetrics.uri?eid=2-s2.0-84908539156&origin=recordpage
U2 - 10.1201/9781315219165-9
DO - 10.1201/9781315219165-9
M3 - RGC 12 - Chapter in an edited book (Author)
SN - 9781420058819
SN - 9781138112766
T3 - The Circuits and Filters Handbook, 3rd Edition
BT - Feedback, Nonlinear, and Distributed Circuits
A2 - Chen, Wai-Kai
PB - CRC Press
ER -