Showing posts with label Systems. Show all posts
Showing posts with label Systems. Show all posts

Sunday, December 30, 2007

The SQUID Handbook: Fundamentals and Technology of SQUIDs and SQUID Systems (Vol 1-2)

This two-volume handbook offers a comprehensive and coordinated presentation of SQUIDs (Superconducting Quantum Interference Devices), including device fundamentals, design, technology, system construction and multiple applications. It thus bridges the gap between fundamentals and applications, and will be a valuable textbook reference for graduates and for professionals engaged in SQUID research and engineering. It will equally be of use to specialists in multiple fields of practical SQUID applications, from human brain research and heart diagnostics, via airplane and nuclear plant testing to prospecting for oil, minerals and buried ordnance.

The first volume presents the theory of SQUIDs, their fabrication from low- and high-temperature superconductors, the necessary readout electronics, and the design and performance of practical direct current and radio-frequency SQUIDs. It concludes with an overview of the most important SQUID system issues. In addition, an appendix summarizes the foundations of superconductivity that are necessary to understand SQUIDs, while a glossary and tables of units and constants are also included.

VOl 1
The SQUID Handbook: Fundamentals and Technology of SQUIDs and SQUID Systems
Vol 2

Wednesday, January 10, 2007

Systems and Control (Engineering & Technology)

Systems and Control (Engineering & Technology)
Publisher:Oxford University Press, USA | 2002-12-12 | ISBN:9780195150117 | Pages:720 | PDF | 5 MB

Book Description:

Systems and Control presents modeling, analysis, and control of dynamical systems. Introducing students to the basics of dynamical system theory and supplying them with the tools necessary for control system design, it emphasizes design and demonstrates how dynamical system theory fits into practical applications. Classical methods and the techniques of postmodern control engineering are presented in a unified fashion, demonstrating how the current tools of a control engineer can supplement more classical tools. Broad in scope, Systems and Control shows the multidisciplinary role of dynamics and control; presents neural networks, fuzzy systems, and genetic algorithms; and provides a self-contained introduction to chaotic systems. The text employs Lyapunov's stability theory as a unifying medium for different types of dynamical systems, using it--with its variants--to analyze dynamical system models. Specifically, optimal, fuzzy, sliding mode, and chaotic controllers are all constructed with the aid of the Lyapunov method and its extensions. In addition, a class of neural networks is also analyzed using Lyapunov's method. Ideal for advanced undergraduate and beginning graduate courses in systems and control, this text can also be used for introductory courses in nonlinear systems and modern automatic control. It requires working knowledge of basic differential equations and elements of linear algebra; a review of the necessary mathematical techniques and terminology is provided.

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