Building and Simulating Electronic, Mechatronic, and Electrical Power System Networks
Learn essential modeling and simulation techniques, such as how to:
- Switch between composite and expanded three-phase ports 
- Switch between physical signal and electrical ports 
- Simulate thermal effects using thermal ports 
Topics
- Essential Electrical Modeling TechniquesApply Simscape™ modeling rules when you build electronic, mechatronic, and electrical power system networks using Simscape Electrical™. 
- Three-Phase PortsConnect three-phase blocks using composite ports for three-phase lines or expanded ports for single-phase lines. 
- Switch Between Physical Signal and Electrical PortsSwitch between a physical signal port and an electrical conserving port on a Simscape Electrical block. 
- Selecting the Output Model for Logic BlocksExplore the two output models available for logic blocks. 
- Simulating an Electronic, Mechatronic, or Electrical Power SystemExplore best practices and techniques for simulating Simscape Electrical models. 
- Simulating Thermal Effects in SemiconductorsSimulate generated heat and device temperature by using the thermal ports. 
- Simulating Thermal Effects in Rotational and Translational ActuatorsSimulate generated heat and device temperature by using the thermal ports. 
- Photovoltaic Thermal (PV/T) Hybrid Solar PanelModel a multi-domain power cogeneration system using Simscape, Simscape Electrical, and Simscape Fluids™. 
- Build and Simulate a Single-Phase Half-Bridge Inverter with Ideal SwitchesBuild a Simscape Electrical model of a single-phase half-bridge inverter with ideal switches, run the model, and examine the results. 
- Build and Simulate Single-Phase Half-Bridge Inverter with Ideal Switches and Thermal PortBuild a Simscape Electrical model of a single-phase half-bridge inverter with ideal switches and a thermal port, run the model, and examine the results. 














