Design and Control of a Buck–Boost Charger-Discharger for DC-Bus Regulation in Microgrids
In DC and hybrid microgrids (MG), the DC-bus regulation using Energy Storage Devices (ESD) is important for the stable operation of both the generators and loads. There are multiple commercial voltage levels for both ESD and DC-bus; therefore, the ESD voltage may be higher, equal or lower than the D...
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doaj-6e334cff652c448eb85d50f0935605212020-11-24T21:45:46ZengMDPI AGEnergies1996-10732017-11-011011184710.3390/en10111847en10111847Design and Control of a Buck–Boost Charger-Discharger for DC-Bus Regulation in MicrogridsCarlos Andrés Ramos-Paja0Juan David Bastidas-Rodríguez1Daniel González2Santiago Acevedo3Julián Peláez-Restrepo4Facultad de Minas, Universidad Nacional de Colombia, Medellín 050040, ColombiaEscuela de Ingenierías Eléctrica, Electrónica y de Telecomunicaciones, Universidad Industrial de Santander, Bucaramanga 680002, ColombiaDepartamento de Electrónica y Telecomunicaciones, Instituto Tecnologico Metropolitano, Medellín 050034, ColombiaDepartamento de Electrónica y Telecomunicaciones, Instituto Tecnologico Metropolitano, Medellín 050034, ColombiaDepartamento de Electrónica y Telecomunicaciones, Instituto Tecnologico Metropolitano, Medellín 050034, ColombiaIn DC and hybrid microgrids (MG), the DC-bus regulation using Energy Storage Devices (ESD) is important for the stable operation of both the generators and loads. There are multiple commercial voltage levels for both ESD and DC-bus; therefore, the ESD voltage may be higher, equal or lower than the DC-bus voltage depending on the application. Moreover, most of the ESD converter controllers are linear-based, hence they ensure stability in a limited operation range. This paper proposes a system to regulate the DC-bus voltage of an MG accounting for any voltage relation between the ESD and the DC-bus voltage. The proposed system is formed by an ESD connected to a DC-bus through a bidirectional Buck–Boost converter, which is regulated by a Sliding-Mode Controller (SMC) to ensure the system stability in the entire operation range. The SMC drives the Buck–Boost charger–discharger to regulate the DC-bus voltage, at the desired reference value, by charging or discharging the ESD. This paper also provides detailed procedures to design the parameters of both the SMC and the charger–dischager. Finally, simulation and experimental results validate the proposed solution and illustrate its performance.https://www.mdpi.com/1996-1073/10/11/1847DC-busvoltage regulationenergy storage devicebuck–boostsliding-mode controller |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Carlos Andrés Ramos-Paja Juan David Bastidas-Rodríguez Daniel González Santiago Acevedo Julián Peláez-Restrepo |
spellingShingle |
Carlos Andrés Ramos-Paja Juan David Bastidas-Rodríguez Daniel González Santiago Acevedo Julián Peláez-Restrepo Design and Control of a Buck–Boost Charger-Discharger for DC-Bus Regulation in Microgrids Energies DC-bus voltage regulation energy storage device buck–boost sliding-mode controller |
author_facet |
Carlos Andrés Ramos-Paja Juan David Bastidas-Rodríguez Daniel González Santiago Acevedo Julián Peláez-Restrepo |
author_sort |
Carlos Andrés Ramos-Paja |
title |
Design and Control of a Buck–Boost Charger-Discharger for DC-Bus Regulation in Microgrids |
title_short |
Design and Control of a Buck–Boost Charger-Discharger for DC-Bus Regulation in Microgrids |
title_full |
Design and Control of a Buck–Boost Charger-Discharger for DC-Bus Regulation in Microgrids |
title_fullStr |
Design and Control of a Buck–Boost Charger-Discharger for DC-Bus Regulation in Microgrids |
title_full_unstemmed |
Design and Control of a Buck–Boost Charger-Discharger for DC-Bus Regulation in Microgrids |
title_sort |
design and control of a buck–boost charger-discharger for dc-bus regulation in microgrids |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2017-11-01 |
description |
In DC and hybrid microgrids (MG), the DC-bus regulation using Energy Storage Devices (ESD) is important for the stable operation of both the generators and loads. There are multiple commercial voltage levels for both ESD and DC-bus; therefore, the ESD voltage may be higher, equal or lower than the DC-bus voltage depending on the application. Moreover, most of the ESD converter controllers are linear-based, hence they ensure stability in a limited operation range. This paper proposes a system to regulate the DC-bus voltage of an MG accounting for any voltage relation between the ESD and the DC-bus voltage. The proposed system is formed by an ESD connected to a DC-bus through a bidirectional Buck–Boost converter, which is regulated by a Sliding-Mode Controller (SMC) to ensure the system stability in the entire operation range. The SMC drives the Buck–Boost charger–discharger to regulate the DC-bus voltage, at the desired reference value, by charging or discharging the ESD. This paper also provides detailed procedures to design the parameters of both the SMC and the charger–dischager. Finally, simulation and experimental results validate the proposed solution and illustrate its performance. |
topic |
DC-bus voltage regulation energy storage device buck–boost sliding-mode controller |
url |
https://www.mdpi.com/1996-1073/10/11/1847 |
work_keys_str_mv |
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