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Active and Reactive Power Allocation Strategy to Maximize the Range of Negative-Sequence Current Compensation Based on Hybrid Cascaded STATCOM

$1,500.00

Steady-State Characterization of LLC-Based Single-Stage AC/DC Converter Based on Numerical Analysis

$1,699.00

Steady-State Characterization of LLC-Based Single-Stage AC/DC Converter Based on Numerical Analysis

$1,699.00

Published in: IEEE Transactions on Power Electronics
Title: Steady-State Characterization of LLC-Based Single-Stage AC/DC Converter Based on Numerical Analysis

This digital package contains all original engineering files and resources used in the development of this IEEE-published research paper.

Included Materials:

  • Mathcad (.xmcd) – Complete steady-state derivation of the LLC resonant converter under varying input conditions

  • MATLAB (.m) – Parameter analysis, frequency response calculations, and ZVS boundary evaluations

  • PSIM (.psimsch) – Full simulation model of the LLC-based AC/DC converter with variable AC input and full load operation

  • Altium Designer (.SchDoc / .PcbDoc) – Schematic and PCB layout of the control and power stages

  • Simulation Data (.mat / .csv) – Measured and simulated voltage/current waveforms and resonance behavior

  • System Diagrams (.svg / .png) – High-resolution topologies, control flow, and waveform transitions

  • README (.txt) – Setup guide for running simulations, reviewing math derivations, and using the design files

 

Ideal For:

  • Engineers designing LLC-based AC/DC converters

  • Researchers validating resonant converter modeling under dynamic inputs

  • Graduate students replicating IEEE-published converter designs

  • Power electronics labs seeking real-world, verified simulation and hardware files

Authors: Xiang Li, Liuniu Guo, Tianchen Lang, Daorong Lu, Khalil Alluhaybi, Haibing Hu

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