Power Converter DC Link Ripple and Network Unbalance as Active Constraints in Distribution System Optimal Power Flow

Fuente: arXiv
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Main Authors: Deakin, Matthew, Heidari, Rahmat, Deng, Xu
Format: Preprint
Published: 2025
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author Deakin, Matthew
Heidari, Rahmat
Deng, Xu
author_facet Deakin, Matthew
Heidari, Rahmat
Deng, Xu
contents The mitigation of unbalanced grid voltages or currents by voltage source converters results in power ripple on the dc link, and is a key converter design parameter due to hardware or stability considerations. Despite the importance of this issue for system design and operation, the use of Optimal Power Flow (OPF)-based methods capturing the interaction between dc link ripple and converter unbalanced operation has been largely unexplored. In this work, the magnitude of the power ripple is derived for generic multi-terminal converters, then introduced as a bilinear OPF constraint for two-level converter topologies. OPF case studies demonstrate the necessity to model both neutral current and dc link ripple, with tradeoffs between capacitor sizing and leg sizing highlighted for phase current unbalance mitigation applications. Time domain simulations of a grid-connected four-wire voltage source converter verify the accuracy and validity of the algebraic formulation. It is concluded that awareness of dc link ripple impacts and constraints will be of growing importance for distribution system operators.
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id arxiv_https___arxiv_org_abs_2512_18293
institution arXiv
publishDate 2025
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spellingShingle Power Converter DC Link Ripple and Network Unbalance as Active Constraints in Distribution System Optimal Power Flow
Deakin, Matthew
Heidari, Rahmat
Deng, Xu
Systems and Control
The mitigation of unbalanced grid voltages or currents by voltage source converters results in power ripple on the dc link, and is a key converter design parameter due to hardware or stability considerations. Despite the importance of this issue for system design and operation, the use of Optimal Power Flow (OPF)-based methods capturing the interaction between dc link ripple and converter unbalanced operation has been largely unexplored. In this work, the magnitude of the power ripple is derived for generic multi-terminal converters, then introduced as a bilinear OPF constraint for two-level converter topologies. OPF case studies demonstrate the necessity to model both neutral current and dc link ripple, with tradeoffs between capacitor sizing and leg sizing highlighted for phase current unbalance mitigation applications. Time domain simulations of a grid-connected four-wire voltage source converter verify the accuracy and validity of the algebraic formulation. It is concluded that awareness of dc link ripple impacts and constraints will be of growing importance for distribution system operators.
title Power Converter DC Link Ripple and Network Unbalance as Active Constraints in Distribution System Optimal Power Flow
topic Systems and Control
url https://arxiv.org/abs/2512.18293