3 edition of **Time-domain computer analysis of nonlinear hybrid systems** found in the catalog.

Time-domain computer analysis of nonlinear hybrid systems

Wenquan Sui

- 158 Want to read
- 26 Currently reading

Published
**2002**
by CRC Press in Boca Raton, FL
.

Written in English

- Electronic circuits -- Computer simulation.,
- Finite differences.,
- Electromagnetism -- Computer simulation.,
- System analysis -- Data processing.,
- Time domain analysis.

**Edition Notes**

Includes bibliographical references and index.

Statement | Wenquan Sui. |

Classifications | |
---|---|

LC Classifications | TK7867 .S95 2002 |

The Physical Object | |

Pagination | xi, 396 p. : |

Number of Pages | 396 |

ID Numbers | |

Open Library | OL22464199M |

ISBN 10 | 0849313961 |

Frequency-Domain Analysis of Nonlinear and Linear Integrators Xinhua Wang Abstract—In this paper, frequency-domain analysis based on frequency sweep method is presented for a nonlinear double integrator and a new linear integrator. All the two types of integrators can estimate the onefold and double integrals of a signal Size: 1MB. Professor Lu has developed Harmonic Balance FEM techniques for nonlinear magnetics and Time Domain FEM techniques for wave propagation problems, and has been working in this area since He has taught numerical techniques in EM, power electronics and electric machines, power transmission and distribution, advanced communications systems.

Time-domain computer analysis of nonlinear hybrid ststems / Wenquan Sui. p. cm. Includes bibliographical references and index. ISBN (alk. paper) 1. Electronic circuits—Computer simulation. 2. Electromagnetism—Computer simulation. 3. System analysis—Data processing. 4. Time domain analysis. 5. Finite differences. I. Title. Justin Coleman, Andrew Whittaker, and Boris Jeremić. Nonlinear Time Domain Seismic Soil Structure Interaction (SSI) Analysis for Nuclear Facilities and Draft Appendix B of ASCE 4 in Proceedings of the Structural Mechanics in Reactor Technology (SMiRT) Conference, San Francisco, August 18 .

time-domain variability analysis of generic linear systems has been recently proposed in the literature [7]. It is based on the computation of the PC coefﬁcients of the scattering parameters of the system under study, on the GP method [2], [9], and on the VF algorithm [10], [11], and it is readily applicable to a. A description is given of the results obtained for step excitation for two human knee joint specimens using a time-domain analysis technique. As was expected from the results of a previous study, the magnitude of the dynamic load applied has a marked influence upon the stiffness and damping values for the two observed vibration by: 7.

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Time-Domain Computer Analysis of Nonlinear Hybrid Systems [Book Review] Article in IEEE Microwave Magazine 3(3) 62 October with 11 Reads How we measure 'reads'.

Time-Domain Computer Analysis of Nonlinear Hybrid Systems summarizes and reviews more than 10 years of research in FDTD cosimulation. It first provides a basic overview of the electromagnetic theory, the link between field theory and circuit theory, transmission line theory, finite-difference approximation, and analog circuit simulation.

Time-Domain Computer Analysis of Nonlinear Hybrid Systems summarizes and reviews more than 10 years of research in FDTD cosimulation. It first provides a basic overview of the electromagnetic theory, the link between field theory and circuit theory, transmission line theory, finite-difference approximation, and analog circuit by: The analysis of nonlinear hybrid electromagnetic systems poses significant challenges that essentially demand reliable numerical methods.

In recent years, research has shown that finite-difference time-domain (FDTD) cosimulation techniques hold great potential for future designs and analyses of electrical -Domain Computer Analysis of Nonlinear Hybrid Systems summarizes and reviews.

ISBN: OCLC Number: Description: xi, pages: illustrations ; 25 cm: Contents: Electromagnetic Systems 2 Hybrid Electromagnetic Systems 8 Organization of the Book 13 --Chapter 2 Electromagnetic Field Theory 19 Electromagnetic Theory 20 Coulomb's law 20 Gauss's law 23 Faraday's law 24 Ampere's law 25.

The Architecture of Computer Hardware, Systems Software, and Networking: An Information Technology Approach, Fifth Edition Time-domain computer analysis of nonlinear hybrid systems. By In Computer Science, Hardware. The analysis of nonlinear hybrid electromagnetic systems poses significant challenges that essentially demand reliable.

Previous analysis has been based on the frequency-domain for this class of systems. However, few results on robustness analysis and controller design for these systems are easily book presents the analysis as well as methods based on the global properties of systems with stationary sets in a unified time-domain and frequency Cited by: CiteScore: ℹ CiteScore: CiteScore measures the average citations received per document published in this title.

CiteScore values are based on citation counts in a given year (e.g. ) to documents published in three previous calendar years (e.g. – 14), divided by the number of documents in these three previous years (e.g. – 14). time response.

For simple linear system, analysis is being done easily by analytical solutions. However, for nonlinear systems or those which have complicated inputs, their integration is carried out numerically or by using MATLAB. In time domain analysis, the time response of a linear dynamic system to an input is denoted as time’s function File Size: KB.

Introduction Nonlinear ESSI in DesignSummary Use of Nonlinear, Time Domain Analysis for Design Nebojša Orbovic,´ Boris Jeremic´, José Antonio Abell Mena, Chao Luo, Robert P.

Kennedy and Andrei Blaihoanu, SMiRT, Manchester, UK, August Jeremi´c et al. Nonlinear ESSI for Design. Matrix‐type FDTD method for hybrid circuits Article in International Journal of RF and Microwave Computer-Aided Engineering 16(3) - May with 4 Reads How we measure 'reads'.

There has been a great deal of excitement in the last ten years over the emer gence of new mathematical techniques for the analysis and control of nonlinear systems: Witness the emergence of a set of simplified tools for the analysis of bifurcations, chaos, and other complicated dynamical behavior and the develop ment of a comprehensive theory of geometric nonlinear control.

ADHS is a series of triennial meetings that aims to bring together researchers and practitioners with a background in control and computer science to provide a survey of the advances in the field of hybrid systems, and of their ability to take up the challenge of analysis, design and verification of efficient and reliable control systems.

Dynamical System. Dynamical systems form the basis of the nonlinear methods of signal analysis [15–17].The study of the dynamical systems has found applications in a number of fields like physics [15–17], engineering [], biology, and medicine [].A dynamical system can be defined as a system, whose state can be described by a set of time-varying (continuous or discrete) variables Cited by: CHAPTER 1 Input/Output Representations in the Time Domain 1 Linear Systems 1 Homogeneous Nonlinear Systems 3 Polynomial and Volterra Systems 18 Interconnections of Nonlinear Systems 21 Heuristic and Mathematical Aspects.

A method is proposed for analyzing the steady-state response of nonlinear dynamic systems. The method iterates to obtain the discrete Fourier transform of the system response, returning to the time domain at each iteration to take advantage of the ease in evaluating nonlinearities there—rather than analytically describing the nonlinear terms in the frequency by: Computer Aided Design of Multivariable Technological Systems covers the proceedings of the Second International Federation of Automatic Control (IFAC).

The book reviews papers that discuss topics about the use of Computer Aided Design (CAD) in designing multivariable system, such as theoretical issues, applications, and implementations. Time-domain analysis of continuous-time LTI systems • Signals: properties, operations, construction, important signals • Single-input, single-output systems: properties • The zero-input response (ZIR): characteristic values and modes • The zero (initial) state response (ZSR): the impulse response, convolution • System stabilityFile Size: 2MB.

effects to provide an interpretation of the underlying systems nonlinear characteristics. Representations of Nonlinear Systems in the Time- and Transform-Domain It is well known that a nonlinear system can be described in the time domain by the input/output representation yn(t) = J) dti (1) which is called the Volterra functional Size: 6MB.

nonlinear analysis of a hybrid PLL in the z-domain where the stability is established via the discrete-time Lur’e{Postnikov Lyapunov function, and the performance is evaluated via the induced ℓ 2 norm : Nur Syazreen Ahmad, Pei Ni Goh.

DESCRIBING FUNCTIONS VOLTERRA SERIES AND THE ANALYSIS OF NONLINEAR SYSTEMS IN THE FREQUENCY DOMAIN J.C. Peyton Jones, S.A. Billings. Dept.

Control Engineering, University of Sheffield, Mappin Street, Sheffield Sl 3JD. Abstract: A relationship between the higher order frequency response functions of the VolterraFile Size: 5MB.A hands-on introduction to advanced applications of power system transients with practical examples Transient Analysis of Power Systems: A Practical Approach offers an authoritative guide to the traditional capabilities and the new software and hardware approaches that can be used to carry out transient studies and make possible new and more complex research.

The book explores a wide range of.The digital computer is often used to perform time domain dynamic analyses of non-linear systems. Such analyses are notoriously expensive. In many cases this expense is Cited by: 5.