This paper presents two novel Modular Multilevel Converter (MMC) configurations for medium-voltage distribution networks, which are achieved by replacing some capacitive cells of each MMC branch with Supercapacitors (SCs) and Battery Packs (BPs), respectively. The first configuration (MMC-SC) is able to exploit SC energy content by preserving MMC branch voltage capability, thus ensuring a suitable dynamic decoupling between grid and DC-link power demands. Steady-state decoupling can be achieved by the second configuration (MMC-BP), which can charge/discharge BP as needed. MMC-SC and MMC-BP functionality is guaranteed by a multi-stage control system architecture, which has been developed in order to ensure proper MMC energy, current and voltage management at any operating conditions. The effectiveness of both MMC-SC and MMC-BP is verified through simulation studies, which regard step-changing active and reactive grid power profiles.

Integration of Energy Storage Systems within Modular Multilevel Converters for Medium-Voltage Distribution Networks

Paolo Meloni
Primo
;
Alessandro Serpi
Ultimo
2022-01-01

Abstract

This paper presents two novel Modular Multilevel Converter (MMC) configurations for medium-voltage distribution networks, which are achieved by replacing some capacitive cells of each MMC branch with Supercapacitors (SCs) and Battery Packs (BPs), respectively. The first configuration (MMC-SC) is able to exploit SC energy content by preserving MMC branch voltage capability, thus ensuring a suitable dynamic decoupling between grid and DC-link power demands. Steady-state decoupling can be achieved by the second configuration (MMC-BP), which can charge/discharge BP as needed. MMC-SC and MMC-BP functionality is guaranteed by a multi-stage control system architecture, which has been developed in order to ensure proper MMC energy, current and voltage management at any operating conditions. The effectiveness of both MMC-SC and MMC-BP is verified through simulation studies, which regard step-changing active and reactive grid power profiles.
2022
978-1-6654-8025-3
Batteries; Control system design; Multilevel converters; Renewable energy source integration; Supercapacitors
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11584/350979
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