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Nonlinear Power Flow Control Design - Utilizing Exergy, Entropy, Static and Dynamic Stability, and Lyapunov Analysis (Hardcover, 2011 ed.) Loot Price: R4,276
Discovery Miles 42 760
Nonlinear Power Flow Control Design - Utilizing Exergy, Entropy, Static and Dynamic Stability, and Lyapunov Analysis...

Nonlinear Power Flow Control Design - Utilizing Exergy, Entropy, Static and Dynamic Stability, and Lyapunov Analysis (Hardcover, 2011 ed.)

Rush D. Robinett III, David G. Wilson

Series: Understanding Complex Systems

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Loot Price R4,276 Discovery Miles 42 760 | Repayment Terms: R401 pm x 12*

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This book presents an innovative control system design process motivated by renewable energy electric grid integration problems. The concepts developed result from the convergence of research and development goals which have important concepts in common: exergy flow, limit cycles, and balance between competing power flows. A unique set of criteria is proposed to design controllers for a class of nonlinear systems. A combination of thermodynamics with Hamiltonian systems provides the theoretical foundation which is then realized in a series of connected case studies. It allows the process of control design to be viewed as a power flow control problem, balancing the power flowing into a system against that being dissipated within it and dependent on the power being stored in it - an interplay between kinetic and potential energies. Human factors and the sustainability of self-organizing systems are dealt with as advanced topics.

General

Imprint: Springer London
Country of origin: United Kingdom
Series: Understanding Complex Systems
Release date: August 2011
First published: 2011
Authors: Rush D. Robinett III • David G. Wilson
Dimensions: 235 x 155 x 27mm (L x W x T)
Format: Hardcover
Pages: 317
Edition: 2011 ed.
ISBN-13: 978-0-85729-822-5
Categories: Books > Science & Mathematics > Physics > Thermodynamics & statistical physics > Thermodynamics
Books > Professional & Technical > Electronics & communications engineering > Electronics engineering > Automatic control engineering > General
LSN: 0-85729-822-4
Barcode: 9780857298225

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