This repo implements grid-forming inverters for islanded stability (droop technique) and grid-following inverters for precise power regulation (PQ control).
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Updated
Nov 21, 2023 - C
This repo implements grid-forming inverters for islanded stability (droop technique) and grid-following inverters for precise power regulation (PQ control).
A Hardware-In-the-Loop (HIL) simulation example for the stm32h743 microcontroller. The chip is interfaced with Simulink running on a laptop via a serial link (UART). To demonstrate the HIL simulation capabilities, a case study is considered where a PID controller implemented on the chip is used to control a model of an aircraft in Simulink.
This repository contains control algorithms for managing a single-phase microgrid, along with a Virtual Hardware-in-the-Loop (VHIL) simulation using Typhoon HIL Control Center.
This project includes simulation and C code for a three-phase NPC inverter control strategy.
This repository contains adaptive control algorithms for managing a single-phase microgrid, along with a Virtual Hardware-in-the-Loop (VHIL) simulation using Typhoon HIL Control Center.
Arduplane Firmware for HITL (Hardware in the loop) simulation using XPlane 10 and APM
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