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Control of Complex Systems - Structural Constraints and Uncertainty (Hardcover): Aleksandar Zecevic, Dragoslav D. Siljak Control of Complex Systems - Structural Constraints and Uncertainty (Hardcover)
Aleksandar Zecevic, Dragoslav D. Siljak
R3,158 Discovery Miles 31 580 Ships in 10 - 15 working days

"Control of Complex Systems: Structural Constraints and Uncertainty" focuses on control design under information structure constraints, with a particular emphasis on large-scale systems. The complexity of such systems poses serious computational challenges and severely restricts the types of feedback laws that can be used in practice. This book systematically addresses the main issues, and provides a number of applications that illustrate potential design methods, most which use Linear Matrix Inequalities (LMIs), which have become a popular design tool over the past two decades. Authors Aleksandar I. Zecevic and Dragoslav D. Siljak use their years of experience in the control field to also:

  • Address the issues of large-scale systems as they relate to robust control and linear matrix inequalities
  • Discuss a new approach to applying standard LMI techniques to large-scale systems, combining graphic-theoretic decomposition techniques with appropriate low-rank numerical approximations and dramatically reducing the computational effort
  • Providing numerous examples and a wide variety of applications, ranging from electric power systems and nonlinear circuits to mechanical problems and dynamic Boolean networks

"Control of Complex Systems: Structural Constraints and Uncertainty" will appeal to practicing engineers, researchers and students working in control design and other related areas.

Control of Complex Systems - Structural Constraints and Uncertainty (Paperback, Previously published in hardcover): Aleksandar... Control of Complex Systems - Structural Constraints and Uncertainty (Paperback, Previously published in hardcover)
Aleksandar Zecevic, Dragoslav D. Siljak
R3,002 Discovery Miles 30 020 Ships in 10 - 15 working days

"Control of Complex Systems: Structural Constraints and Uncertainty" focuses on control design under information structure constraints, with a particular emphasis on large-scale systems. The complexity of such systems poses serious computational challenges and severely restricts the types of feedback laws that can be used in practice. This book systematically addresses the main issues, and provides a number of applications that illustrate potential design methods, most which use Linear Matrix Inequalities (LMIs), which have become a popular design tool over the past two decades. Authors Aleksandar I. Zecevic and Dragoslav D. Siljak use their years of experience in the control field to also:

  • Address the issues of large-scale systems as they relate to robust control and linear matrix inequalities
  • Discuss a new approach to applying standard LMI techniques to large-scale systems, combining graphic-theoretic decomposition techniques with appropriate low-rank numerical approximations and dramatically reducing the computational effort
  • Providing numerous examples and a wide variety of applications, ranging from electric power systems and nonlinear circuits to mechanical problems and dynamic Boolean networks

"Control of Complex Systems: Structural Constraints and Uncertainty" will appeal to practicing engineers, researchers and students working in control design and other related areas.

Decentralized Control of Complex Systems (Paperback, Dover): Dragoslav D. Siljak, Engineering Decentralized Control of Complex Systems (Paperback, Dover)
Dragoslav D. Siljak, Engineering
R826 R733 Discovery Miles 7 330 Save R93 (11%) Ships in 10 - 15 working days

Starting with a graph-theoretic framework for structural modeling of complex systems, this text presents results related to robust stabilization via decentralized state feedback. Subsequent chapters explore optimization, output feedback, the manipulative power of graphs, overlapping decompositions and the underlying inclusion principle, and reliability design. An appendix provides efficient graph algorithms. 1991 edition.

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