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  1. Research Outputs

An Approach to Control Multilevel Flying-Capacitor Converters Using Optimal Dynamic Programming Benchmark

Academic Article
Publication Date:
2025
Short description:
An Approach to Control Multilevel Flying-Capacitor Converters Using Optimal Dynamic Programming Benchmark / Tebaldi, Davide. - In: ELECTRONICS. - ISSN 2079-9292. - 14:5(2025), pp. 1-1. [10.3390/electronics14050948]
abstract:
The problem of balancing capacitor voltages is of utmost importance in multilevel converter topologies involving flying capacitors. In this study, a new minimum angular distance (MAD) algorithm is proposed to control the turning on and off of the switches, ensuring fast convergence of the capacitor voltages balancing problem in multilevel flying-capacitor converters. This algorithm was developed based on a preliminary analytical analysis of the capacitor voltage trajectories using the power-oriented model of the converter. Compared to other approaches, the proposed algorithm involves only simple and well-defined calculations, requires no training, and does not require any prediction of future values that the output current assumes. The proposed algorithm, implemented in the MATLAB/Simulink environment, is proven to give very good performance, verified against an optimal benchmark given by dynamic programming, in terms of capacitor voltages convergence time, efficiency, power loss, and total harmonic distortion.
Iris type:
Articolo su rivista
Keywords:
modeling; control applications; simulation; power systems; multilevel flying-capacitor converters; dynamic programming
List of contributors:
Tebaldi, Davide
Authors of the University:
TEBALDI DAVIDE
Handle:
https://iris.unimore.it/handle/11380/1373628
Full Text:
https://iris.unimore.it//retrieve/handle/11380/1373628/749773/electronics-14-00948.pdf
Published in:
ELECTRONICS
Journal
Project:
Energy-Aware Control of Physical Systems Composing Robotic Manipulators for Increasing Efficiency and Safety
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URL

https://www.mdpi.com/2079-9292/14/5/948
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