DSP based Hardware-in-the-Loop (HIL) Simulation for GCPV-based DSTATCOM using Frequency Domain Controller

Author:

Sobri N F A,Baharudin N H,Mansur T M N T,Syahril M,Ali R,Ananda-Rao K,Suboh S M,Abdullah A M

Abstract

Abstract This study presents a comprehensive simulation of digital control applications for a grid-connected photovoltaic (GCPV) system using a Hardware-in-the-Loop (HIL) simulation approach that incorporates a Digital Signal Processor (DSP). The simulation is carried out using the MATLAB Simulink block set and employs a frequency domain controller as the control algorithm. The simulation inputs, which consist of voltage and current sensor readings, are processed by an ADC idealizer block that produces output based on a real-time DSP-based HIL system. The output is then utilized to generate a pulse width modulation (PWM) signal, which drives the voltage source inverter (VSI). The simulation’s primary objective is to demonstrate the simplicity and efficacy of the proposed frequency domain controller design for the GCPV-based DSTATCOM system. The simulation results validate the performance of the controller under various operating conditions, including steady-state, unbalanced loads, variable solar insolation, and day-to-night transitions.

Publisher

IOP Publishing

Subject

Computer Science Applications,History,Education

Reference16 articles.

1. Control of Grid Tied Smart PV-DSTATCOM System Using an Adaptive Technique;Singh;IEEE Trans Smart Grid,2018

2. Photovoltaic penetration issues and impacts in distribution network - A review;Karimi;Renew Sustain Energy Rev.,2016

3. Power Quality: Problems and Mitigation Techniques;Kazmierkowski;IEEE Ind Electron Mag.,2015

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