Seminář Ústavu termomechaniky

je organizován Ústavem termomechaniky AV ČR, v. v. i.
obvykle každou první středu v měsíci od 10:00
v posluchárnách B nebo A (výjimečně C - klub) v hlavní budově Ústavu termomechaniky AV ČR, v. v. i., (kontaktní informace zde)
 



 

Program semináře: 2019 | 2018 | 2017 | 2016 | 2015 | 2014

 

Příští přednáška:


středa 31. července 2019 v 10:00, posluchárna B

Control of Grid-side Converters under Grid Imbalance

Prof. Yongsug Suh, Ph.D.,
Chonbuk National University, Jeonju, Korea

The growing penetration of renewable energy sources into the present power grid requires that renewable energy sources provide the similar electrical characteristics as those of classical thermal power plants. In order to meet this requirement, active front-end converters; grid-side converters of renewable energy sources have been evolving to offer various control features to properly regulate the active and reactive output power. Recently, grid codes about LVRT and operation under unbalanced grid become very strict. In general, unbalanced current is caused by unbalanced grid conditions, and it leads to unbalanced voltage at PCC (Point of Common Coupling). These unbalanced voltage conditions generate a significant ripple and distortion of dc-link and ac input current of grid-side converters which eventually undermine various control features of grid side converter. This seminar covers the latest requirements on the gridside converter of renewable energy sources particularly under grid imbalance. The impact of grid imbalance on the operation of grid-side converters is analyzed based on the positive and negative sequential component theory of unbalanced electrical network. The various control techniques to properly compensate for the generation of harmonics are introduced. These control techniques are aimed to enhance the grid-friendly electrical characteristics of renewable energy sources. As a result, these control techniques are expected to play a positive role in growing penetration of renewable energy sources into the present power grid.


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