Optimal and Robust Control:Advanced Topics with MATLAB®

最优与稳健的控制:矩阵实验室高级主题 第2版

航空、航天科学技术基础学科

原   价:
1532.00
售   价:
1149.00
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平台大促 低至8折优惠
发货周期:预计5-7周发货
出  版 社
出版时间
2021年11月16日
装      帧
精装
ISBN
9781032053004
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页      码
322
开      本
234 x 156 mm (6.14 x 9.21
语      种
英文
版      次
2nd ed.
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图书简介
There are many books on advanced control for specialists, but not many present these topics for non-specialists. Assuming only a basic knowledge of automatic control and signals and systems, this second edition of Optimal and Robust Control offers a straightforward, self-contained handbook of advanced topics and tools in automatic control. The book deals with advanced automatic control techniques, paying particular attention to robustness-the ability to guarantee stability in the presence of uncertainty. It explains advanced techniques for handling uncertainty and optimizing the control loop. It also details analytical strategies for obtaining reduced order models. The authors then propose using the Linear Matrix Inequality (LMI) technique as a unifying tool to solve many types of advanced control problems. Topics covered in the book include,
  • LQR and H8 approaches
  • Kalman and singular value decomposition
  • Open-loop balancing and reduced order models
  • Closed-loop balancing
  • Positive-real systems, bounded-real systems, and imaginary-negative systems
  • Criteria for stability control
  • Time-delay systems This easy-to-read text presents the essential theoretical background and provides numerous examples and MATLAB® exercises to help the reader efficiently acquire new skills. Written for electrical, electronic, computer science, space, and automation engineers interested in automatic control, this book can also be used for self-study of for a one-semester course in robust control. This fully renewed second edition of the book also includes new fundamental topics such as Lyapunov functions for stability, variational calculus, formulation in terms of optimization problems of matrix algebraic equations, negative-imaginary systems, and time-delay systems.
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