Assessment and implementation of an optimized Digital Hysteresis Current Control for a low cost Three-level Boost Rectifier in Metal Industries

Author(s):  
Gabriel Vilkn Ramos ◽  
Alex-Sander Amavel Luiz ◽  
Marcelo Martins Stopa ◽  
Marcos Paulo Brito Gomes
Electronics ◽  
2021 ◽  
Vol 10 (8) ◽  
pp. 977
Author(s):  
P. Madasamy ◽  
Rajesh Verma ◽  
A. Rameshbabu ◽  
A. Murugesan ◽  
R. Umamageswari ◽  
...  

Transformer-less (TL) inverter topologies have elicited further special treatment in photo-voltaic (PV) power system as they provide high efficiency and low cost. Neutral point clamped (NPC) multilevel-inverter (MLI) topologies-based transformer-less are being immensely used in grid-connected medium-voltage high-power claims. Unfortunately, these topologies such as NPC-MLI, full-bridge inverter with DC bypass (FB-DCBP) suffer from the shoot-through problem on the bridge legs, which affect the reliability of the implementation. Based on the previous above credits, a T type neutral point clamped (TNP)—MLI (TNP-MLI) with transformer-less topology called TL-TNP-MLI is presented to be an alternate which can be suitable in the grid-connected PV power generation systems. The suggested TL-TNP-MLI topologies free from inverter bridge legs shoot-through burden, switching frequency common-mode current (CMC), and leakage current. The control system of the grid interface with hysteresis current control (HCC) strategy is proposed. The effectiveness of the proposed PV connected transformer-less TNP-MLI topology with different grid and PV scenario has been verified through the MATLAB/Simulink simulation model and field-programmable gate area (FPGA)-based experimental results for a 1.5 kW system.


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