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Leonardo Saccenti, Valentina Bianchi and Ilaria De Munari
In a multiple parallel-connected inverters system, limiting the circulating current phenomenon is mandatory since it may influence efficiency and reliability. In this paper, a new control method aimed at this purpose and conceived to be implemented on a ...
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Dionisis Voglitsis, Fotis Valsamas, Nick Papanikolaou, Aristotelis Tsimtsios, Ioannis Perpinias and Christos Korkas
In this work the harmonic injection active anti-islanding technique that has been recently proposed in reference Voglitsis et al. (2018) published in Trans. Power Electron. is generalized under the prospect of a high penetration level of distributed ener...
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Jingrong Yu, Limin Deng, Dongran Song and Maolin Pei
This paper proposes a virtual impedance-based bandwidth control method for multi-parallel harmonic-compensation grid-connected inverters (HCGIs). Firstly, the influence of the resonance points caused by the interaction of multiple HCGIs on the control ba...
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Xiaohui Yang, Peiyun Liu, Shaoping Xu and Shichao Liu
There exist several challenges in the implementation of proportional multiple quasi-resonant (PMQR) control strategies in single-phase grid-connected H6 inverters, such as high computational costs and design complexity. To overcome these challenges, this...
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Marian Liberos, Raúl González-Medina, Gabriel Garcerá and Emilio Figueres
This paper presents a control structure for transformerless photovoltaic inverters connected in parallel to manage photovoltaic fields in the MW range. Large photovoltaic farms are usually divided into several photovoltaic fields, each one of them manage...
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César Leonardo Trujillo Rodríguez, David Velasco de la Fuente, Emilio Figueres Amoros, Gabriel Garcera Sanfeliu, Ruben Ortega Gonzalez
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