This advanced course focuses on the analysis and operation of large-scale power systems. You will study power flow analysis, economic dispatch, system stability (steady-state and transient), and fault analysis in interconnected power networks.
This course focuses on the application of measurement and control in industrial settings. It covers process control, the principles of telemetry, and the use of programmable logic controllers (PLCs) for automation.
This course delves into advanced control system design and analysis. It covers state-space analysis, controller design techniques (like PID controllers), and an introduction to digital control systems.
This is the continuation of CAD, focusing on the complete design and drafting of electrical installation systems for industrial and commercial buildings. You will learn to produce detailed layouts, schematics, and schedules using industry-standard software.
This course covers the theory and application of specialized and advanced electrical machines. Topics often include synchronous generators and motors, single-phase motors, and special-purpose motors used in control systems and robotics.
This is a fundamental theoretical course that covers the principles of electric and magnetic fields. You will study Maxwell's equations, wave propagation, and transmission line theory, which form the basis for telecommunications and high-frequency engineering.
This course introduces methods for solving complex mathematical problems using numerical approximations. It is essential for solving engineering problems that do not have analytical solutions. Topics include root finding, interpolation, and the numerical solution of differential equations.