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Impact of the DC-DC Stage on Grid-Connection Stability in Solid-State Transformer

Conference Paper
Publication Date:
2023
abstract:
This paper addresses the impact of the dc-dc stage on the grid-connection stability of a three-phase Solid-State Transformer based on the Cascaded H-Bridge and Dual Active Bridge topologies. In particular, the analysis aimed to reveal and discuss the impact of the isolated bidirectional dc-dc stage on the input dq-frame impedance matrix properties in terms of its passivity. For this purpose, the d-axis input impedance has been mainly addressed in this work. Its low-frequency simplified expression has been derived, by means of which its real part and the negative-resistance region upper limit can be analytically deduced, enabling a passivity-oriented design procedure. It is demonstrated that the dc-dc converter lowers that limit thus enhancing the grid-connected Solid-State Transformer passivity. The analysis performed in this work can be applied to a generic ac-dc-dc topology.
Iris type:
4.1 Contributo in Atti di convegno
Keywords:
Terms—Stability analysis, Solid-State Transformer (SST), Dual Active Bridge (DAB), Cascaded H-Bridge (CHB), passivity theory, grid interaction
List of contributors:
Granata, Samuele; Tresca, Giulia; Benzi, Francesco; Zanchetta, Pericle
Authors of the University:
BENZI FRANCESCO
TRESCA GIULIA
ZANCHETTA PERICLE
Handle:
https://iris.unipv.it/handle/11571/1494459
Book title:
2023 IEEE Energy Conversion Congress and Exposition (ECCE)
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