Practical Control Engineering: Guide for Engineers, Managers, and Practitioners

Specificaties
Gebonden, blz. | Engels
McGraw-Hill Education | e druk, 2009
ISBN13: 9780071606134
Rubricering
McGraw-Hill Education e druk, 2009 9780071606134
Verwachte levertijd ongeveer 11 werkdagen

Samenvatting

Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.

An Essential Guide to Control Engineering Fundamentals

Understand the day-to-day procedures of today's control engineer with the pragmatic insights and techniques contained in this unique resource. Written in clear, concise language, Practical Control Engineering shows, step-by-step, how engineers simulate real-world phenomena using dynamic models and algorithms. Learn how to handle single and multiple-staged systems, implement error-free feedback control, eliminate anomalies, and work in the frequency and discrete-time domains. Extensive appendices cover basic calculus, differential equations, vector math, Laplace and Z-transforms, and Matlab basics. Practical Control Engineering explains how to:Gain insight into control engineering and process analysisWrite and debug algorithms that simulate physical processes Understand feedback, feedforward, open loops, and cascade controlsBuild behavioral models using basic applied mathematics
Analyze lumped, underdamped, and distributed processes
Comprehend matrix, vector, and state estimation concepts
Convert from continuous to discrete-time and frequency domainsFilter out white noise, colored noise, and stochaic disturbances

Specificaties

ISBN13:9780071606134
Taal:Engels
Bindwijze:gebonden

Inhoudsopgave

Chapter 1. Qualitative Concepts in Control Engineering and Process Analysis<br>Chapter 2. Introduction to Developing Control Algorithms<br> Chapter 3. Basic Concepts in Process Analysis<br> Chapter 4. A New Domain and More Process Models<br> Chapter 5. Matrices and Higher Order Process Models<br> Chapter 6. An Underdamped Process<br>Chapter 7. Distributed Processes<br>Chapter 8. Stochastic Process Disturbances and the Discrete Time Domain<br> Chapter 9. The Discrete Time Domain and the Z-Transform<br> Chapter 10. Estimating the State and Using It for Control<br> Chapter 11. A review of Control Algorithms<br> Appendix A: Rudimentary Calculus<br>Appendix B: Complex Numbers<br>Appendix C: Spectral Analysis<br>Appendix D: Infinite and Taylor's Series<br>Appendix E: Application of the Exponential Function to Differential Equations<br>Appendix F: The Laplace Transform<br>Appendix G: Vectors and Matrices<br>Appendix H: Solving the State-Space Equation<br>Appendix I: The Z-Transform<br>Appendix J: A Brief Exposure to Matlab<br>Index

Rubrieken

    Personen

      Trefwoorden

        Practical Control Engineering: Guide for Engineers, Managers, and Practitioners