Electrical and Electronic Engineering Explained: Circuits, Signals, Power Systems and Electronics is a publication-grade Open Educational Resource (OER) and foundational curriculum hub module. It bridges classical circuit theorems and differential balance laws with modern engineering disciplines, high-voltage utility power infrastructure, microelectronics, and AI-era computational paradigms.
Key Curricular Modules & Features:1. Complete Domain Coverage: Structured pathways across 12 sub-disciplines including Power Systems, Renewable Energy, Digital Signal Processing (DSP), Control Systems, Microelectronics/VLSI, IoT, Robotics & Automation, and Quantum Electronics.2. Interactive Transient Simulator: A client-side JavaScript/Canvas RLC step-response engine illustrating second-order transient dynamics (underdamped, critically damped, overdamped modes) with labeled coordinate axes.3. Contemporary AI & Computational Paradigms: Rigorous integration of Physics-Informed Neural Networks (PINNs), Fourier Neural Operators (FNOs), DeepONets, and Lie-group invariant state estimation (IEKF/UKF).4. Systems Engineering Architecture: Detailed trade-off matrices evaluating Wide-Bandgap semiconductors (GaN/SiC) vs. Silicon IGBTs, FIR vs. IIR digital filtering, dedicated SoC/ASIC vs. RTOS microcontrollers, and HVDC vs. HVAC transmission.5. Worked Engineering Calculations & Problem Sets: Step-by-step mathematical calculations for series RLC resonance and dielectric breakdown limits, supported by 29 fully resolved foundational review questions, analytical design inquiries, and numerical practice problems.