Digital Control Engineering: Analysis and Design, 2/e (Hardcover)
暫譯: 數位控制工程:分析與設計,第二版 (精裝本)

M. Sami Fadali, Antonio Visioli

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商品描述

<內容簡介>

Extensive Use of computational tools: Matlab sections at end of each chapter show how to implement concepts from the chapter.
Frees the student from the drudgery of mundane calculations and allows him to consider more subtle aspects of control system analysis and design.

An engineering approach to digital controls: emphasis throughout the book is on design of control systems. Mathematics is used to help explain concepts, but throughout the text discussion is tied to design and implementation. For example coverage of analog controls in chapter 5 is not simply a review, but is used to show how analog control systems map to digital control systems.

Review of Background Material: contains review material to aid understanding of digital control analysis and design. Examples include discussion of discrete-time systems in time domain and frequency domain (reviewed from linear systems course) and root locus design in s-domain and z-domain (reviewed from feedback control course).

Inclusion of Advanced Topics
In addition to the basic topics required for a one semester senior/graduate class, the text includes some advanced material to make it suitable for an introductory graduate level class or for two quarters at the senior/graduate level. Examples of optional topics are state-space methods, which may receive brief coverage in a one semester course, and nonlinear discrete-time systems.

Minimal Mathematics Prerequisites
The mathematics background required for understanding most of the book is based on what can be reasonably expected from the average electrical, chemical or mechanical engineering senior. This background includes three semesters of calculus, differential equations and basic linear algebra. Some texts on digital control require more mathematical maturity and are therefore beyond the reach of the typical senior.


<章節目錄>

Chapter 1. Introduction to Digital Control
Chapter 2. Discrete-Time systems
Chapter 3. Modeling of Digital Control Systems
Chapter 4. Stability of Digital Control Systems
Chapter 5. Analog Control System Design
Chapter 6. Digital Control System Design
Chapter 7. State-Space Representation
Chapter 8. Properties of State-Space Models
Chapter 9. State Feedback Control
Chapter 10. Optimal Control
Chapter 11. Elements of Nonlinear Digital Control Systems
Chapter 12. Practical Issues
Appendix I: Table of Laplace and Z-Transforms
Appendix II: Properties of the Z-Transform
Appendix III: Review of Linear Algebra

商品描述(中文翻譯)

內容簡介
廣泛使用計算工具:每章末尾的 Matlab 部分展示了如何實現該章的概念。
使學生擺脫繁瑣的計算,讓他能夠考慮控制系統分析和設計的更微妙方面。

數位控制的工程方法:全書強調控制系統的設計。數學用於幫助解釋概念,但整個文本的討論都與設計和實施相關。例如,第五章對類比控制的覆蓋不僅僅是回顧,而是用來展示類比控制系統如何映射到數位控制系統。

背景材料的回顧:包含回顧材料以幫助理解數位控制分析和設計。例子包括對離散時間系統在時間域和頻率域的討論(從線性系統課程回顧)以及在 s 域和 z 域的根軌跡設計(從反饋控制課程回顧)。

包含進階主題
除了滿足一學期的高年級/研究生課程所需的基本主題外,文本還包括一些進階材料,使其適合於入門研究生級別的課程或高年級/研究生級別的兩個學期。可選主題的例子包括狀態空間方法,這在一學期的課程中可能會簡要涵蓋,以及非線性離散時間系統。

最小數學先修知識
理解本書大部分內容所需的數學背景基於對平均電機、化學或機械工程高年級學生的合理期望。這一背景包括三學期的微積分、微分方程和基本線性代數。一些數位控制的文本需要更高的數學成熟度,因此超出了典型高年級學生的範疇。

章節目錄
第 1 章 數位控制簡介
第 2 章 離散時間系統
第 3 章 數位控制系統建模
第 4 章 數位控制系統的穩定性
第 5 章 類比控制系統設計
第 6 章 數位控制系統設計
第 7 章 狀態空間表示
第 8 章 狀態空間模型的特性
第 9 章 狀態反饋控制
第 10 章 最優控制
第 11 章 非線性數位控制系統的元素
第 12 章 實際問題
附錄 I:拉普拉斯變換和 Z 變換表
附錄 II:Z 變換的特性
附錄 III:線性代數回顧