Gus B. H. de Azevedo

Assistant Research Professor

Mechanical & Aerospace Engineering

  • Assistant Research Professor
    Mechanical & Aerospace Engineering

TEACHING SUMMARY

Introduction to algorithms, object-oriented programming, Introduction to electronics, measurements and automation, LabVIEW programming, reactive systems, autonomous systems, and VLSI Design with VHSIC Hardware Description Language.

TEACHING

  • COURSE TAUGHT
    Linear Systems
    12 Jan 2026 - 1 May 2026
    Introduction to the fundamental theory of finite-dimensional linear systems with emphasis on the state-space representation. Mathematical representations of systems; linear dynamic solutions; controllability, observability, and stability; linearization and realization theory; and state feedback and state observer. Same course as MAE 5713.Prerequisite(s): ECEN 4413 or Departmental Permission.
  • COURSE TAUGHT
    Linear Systems
    12 Jan 2026 - 1 May 2026
    Introduction to the fundamental theory of finite-dimensional linear systems with emphasis on the state-space representation. Mathematical representations of systems; linear dynamic solutions; controllability, observability, and stability; linearization and realization theory; and state feedback and state observer. Same course as MAE 5713.Prerequisite(s): ECEN 4413 or Departmental Permission.
  • COURSE TAUGHT
    Linear Systems
    12 Jan 2026 - 1 May 2026
    Introduction to the fundamental theory of finite-dimensional linear systems with emphasis on the state-space representation. Mathematical representations of systems; linear dynamic solutions; controllability, observability, and stability; linearization and realization theory; and state feedback and state observer. Same course as ECEN 5713.Prerequisite(s): Graduate standing or consent of instructor.
  • COURSE TAUGHT
    Linear Systems
    12 Jan 2026 - 1 May 2026
    Introduction to the fundamental theory of finite-dimensional linear systems with emphasis on the state-space representation. Mathematical representations of systems; linear dynamic solutions; controllability, observability, and stability; linearization and realization theory; and state feedback and state observer. Same course as ECEN 5713.Prerequisite(s): Graduate standing or consent of instructor.
  • COURSE TAUGHT
    Automatic Control Systems
    18 Aug 2025 - 5 Dec 2025
    Properties of feedback control systems, mathematical models of basic components, state-variable models of feedback systems, time-domain analysis, stability, transform analysis, frequency domain techniques, root-locus design of single input single output systems and simple compensation techniques. Same course as MAE 4053.Prerequisite(s): ECEN 3723 or (MAE 3723 or MAE 3724).
  • COURSE TAUGHT
    Automatic Control Systems
    18 Aug 2025 - 5 Dec 2025
    Properties of feedback control systems, mathematical models of basic components, state-variable models of feedback systems, design specifications of control systems, time-domain analysis, stability, stability robustness, transform analysis, frequency domain techniques, root-locus, design of single-input-single-output systems and compensation techniques for engineering systems. Same course as ECEN 4413.Prerequisite(s): A grade of 'C' or higher in MAE 3724 or ECEN 3723.