Treffer: Optimal Selection of Switch Model Parameters for ADC-Based Power Converters

Title:
Optimal Selection of Switch Model Parameters for ADC-Based Power Converters
Source:
Energies, Vol 17, Iss 1, p 56 (2023)
Publisher Information:
MDPI AG, 2023.
Publication Year:
2023
Collection:
LCC:Technology
Document Type:
Fachzeitschrift article
File Description:
electronic resource
Language:
English
ISSN:
1996-1073
DOI:
10.3390/en17010056
Accession Number:
edsdoj.77f9a6c9152d40469f5d114f9f4e4ee0
Database:
Directory of Open Access Journals

Weitere Informationen

Real-time hardware-in-the-loop-(HIL) simulation integration is now a fundamental component of the power electronics control design cycle. This integration is required to test the efficacy of controller implementations. Even though hardware-in-the-loop-(HIL) tools use FPGA devices with computing power that is rapidly evolving, developers constantly need to balance the ease of deploying models with acceptable accuracy. This study introduces a methodology for implementing a full-bridge inverter and buck converter utilising the associate-discrete-circuit-(ADC) model, which is optimised for real-time simulator applications. Additionally, this work introduces a new approach for choosing ADC parameter values by using the artificial-bee-colony-(ABC) algorithm, the firefly algorithm (FFA), and the genetic algorithm (GA). The implementation of the ADC-based model enables the development of a consistent architecture in simulation, regardless of the states of the switches. The simulation results demonstrate the efficacy of the proposed methodology in selecting optimal parameters for an ADC-switch-based full-bridge inverter and buck converter. These results indicate a reduction in overshoot and settling time observed in both the output voltage and current of the chosen topologies.