In this course, you'll explore modeling of dynamic systems and feedback control. The course begins with an introduction of control theory and the application of Laplace transforms in solving differential equations, providing a strong foundation in linearity, time-invariance, and dynamic system modeling. The following week will delve into the laws governing the modeling of dynamic systems, with a focus on deriving differential equations from fundamental principles like Newton's laws and Kirchhoff's laws, as well as mastering the representation of systems as transfer functions in the Laplace domain. The third week delves deeper into Laplace transforms, emphasizing initial/final value theorems, block diagram manipulation, and dynamic response analysis. Moving into the fourth week, you'll learn to analyze system performance using transient step response specifications, enabling you to assess and optimize system behavior effectively. Finally, in the fifth week, you'll explore Bounded-Input Bounded-Output (BIBO) stability and Routh's stability criterion, gaining the skills to assess, analyze, and design stable systems. By the course's end, you'll be well-equipped to navigate the intricacies of control systems and dynamic modeling.
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您将学到什么
Derive differential equations and transfer functions for simple mechanical, electrical, and electromechanical systems.
Analyze the dynamic response of 1st and 2nd order systems.
Explain the relationship between pole locations of 2nd-order systems and common step response performance specifications.
Characterize Bounded-Input Bounded-Output (BIBO) stability and determine the number of unstable roots using Routh’s stability criterion.
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已于 Mar 19, 2024审阅
Fairly good class. Students with experience in diff eqs should find it challenging. I would recommend creating extra material in using software like Mathematica or Matlab to help solve problems.
已于 Nov 16, 2024审阅
Thanks to dr Lucy pao never seen a teacher like him
已于 Oct 26, 2025审阅
in the course, some questions were hard to understand. For future courses if possible, add conceptual hints for solving the problems.



