A hybrid control topology for cascaded H-bridge multilevel inverter to improve the power quality of smart grid connected system: NBO-RERNN approach
Author:
Publisher
Elsevier BV
Subject
Artificial Intelligence,Computer Science Applications,General Engineering
Reference53 articles.
1. An assessment of recent multilevel inverter topologies with reducespower electronics components for renewable applications;Ali;Renewable and Sustainable Energy Reviews,2018
2. Selective harmonic elimination in asymmetric cascaded multilevel inverters using a new low-frequency strategy for photovoltaic applications;Bakhshizadeh;Electric Power Components and Systems,2015
3. A RERNN-SGO technique for improved quasi-Z-source cascaded multilevel inverter topology for interfacing three phase grid-tie photovoltaic system;Bhavani;International Journal On Artificial Intelligence Tools,2023
4. Power electronics converters for wind turbine systems;Blaabjerg;IEEE Transactions on Industry Applications,2011
5. Multilevel diode-clamped converter for photovoltaic generators with independent voltage control of each solar array;Busquets-Monge;IEEE Transactions on Industrial Electronics,2008
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