Linear time-invariant systems
著者
書誌事項
Linear time-invariant systems
IEEE , Wiley-Interscience, c2003
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注記
Includes index
内容説明・目次
内容説明
A new and practical approach to understanding system theory The modern development of engineering and science requires a deep understanding of the basic concepts of system theory. Approaching the subject from a system, rather than an application-oriented perspective, world-renowned system expert Martin Schetzen provides practicing engineers and scientists, as well as students, with a solid, clearly explained foundation in the fundamentals of linear time-invariant (continuous) system theory.
Developing linear systems from a functional viewpoint, the book is noteworthy for its presentation of: * The time-domain theory of continuous time linear time-invariant (LTI) systems * System transfer function, gain, and phase-shift * An original development of the Fourier transform, the unilateral and bilateral Laplace transforms, and their inverses from a system theory viewpoint * Basic filter analysis and design techniques from the s-plane viewpoint * Feedback systems and their stability, interconnected systems, and block diagram reduction * The state-variable approach to system analysis and its advantages for certain problems Taking an original, highly useful approach to system theory, Linear Time-Invariant Systems lays a solid foundation for further study of system modeling, control theory, filter theory, discrete system theory, state-variable theory, and other subjects requiring a system viewpoint. An Instructor's Manual presenting detailed solutions to all the problems in the book is available upon request from the Wiley Makerting Department.
目次
Preface. General System Concepts. Linear Time-Invariant (LTI) Systems. Properties of LTI Systems. The Frequency Domain Viewpoint. The Fourier Transform. The Bilateral Laplace Transform. The Inverse Bilateral Laplace transform. Laplace Transform Analysis of the System Output. S-Plane View of Gain and Phase Shift. Interconnection of Systems. Appendix A. A Primer on Complex Numbers and Complex Algebra. Appendix B. Energy Distribution in Transient Functions. Index.
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