Renewable energy management through microgrid central controller design: An approach to integrate solar, wind and biomass with battery

In this study, an isolated microgrid comprising of renewable energy (RE) sources like wind, solar, biogas and battery is considered. Provision of utility grid insertion is also given if total microgrid sources falls short of supplying the total load. To establish an efficient energy management strat...

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Main Authors: Zaheeruddin, Munish Manas
Format: Article
Language:English
Published: Elsevier 2015-11-01
Series:Energy Reports
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352484715000256
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spelling doaj-73cda80913544e01bd9fd7af8af183452020-11-24T21:08:07ZengElsevierEnergy Reports2352-48472015-11-011C15616310.1016/j.egyr.2015.06.003Renewable energy management through microgrid central controller design: An approach to integrate solar, wind and biomass with batteryZaheeruddinMunish ManasIn this study, an isolated microgrid comprising of renewable energy (RE) sources like wind, solar, biogas and battery is considered. Provision of utility grid insertion is also given if total microgrid sources falls short of supplying the total load. To establish an efficient energy management strategy, a central controller takes the decision based on the status of the loads and sources. The status is obtained with the assistance of multi-agent concept (treating each source and load as an agent). The data acquisition system of these renewable sources and loads consists of multiple sensors interconnected through Low Power Radio over one of many GPRS communication. The Microgrid Central Controller (MGCC) would use an embedded energy management algorithm to take decisions, which are then transmitted to the controllable RE systems to manage the utilization of their power outputs as per the load-supply power balance. A control strategy is adopted to regulate the power output from the battery in case of supply shortage, which results in a floating battery scheme in steady state.http://www.sciencedirect.com/science/article/pii/S2352484715000256MicrogridMicrogrid central controller (MGCC)Energy managementRenewable energy sources modeling
collection DOAJ
language English
format Article
sources DOAJ
author Zaheeruddin
Munish Manas
spellingShingle Zaheeruddin
Munish Manas
Renewable energy management through microgrid central controller design: An approach to integrate solar, wind and biomass with battery
Energy Reports
Microgrid
Microgrid central controller (MGCC)
Energy management
Renewable energy sources modeling
author_facet Zaheeruddin
Munish Manas
author_sort Zaheeruddin
title Renewable energy management through microgrid central controller design: An approach to integrate solar, wind and biomass with battery
title_short Renewable energy management through microgrid central controller design: An approach to integrate solar, wind and biomass with battery
title_full Renewable energy management through microgrid central controller design: An approach to integrate solar, wind and biomass with battery
title_fullStr Renewable energy management through microgrid central controller design: An approach to integrate solar, wind and biomass with battery
title_full_unstemmed Renewable energy management through microgrid central controller design: An approach to integrate solar, wind and biomass with battery
title_sort renewable energy management through microgrid central controller design: an approach to integrate solar, wind and biomass with battery
publisher Elsevier
series Energy Reports
issn 2352-4847
publishDate 2015-11-01
description In this study, an isolated microgrid comprising of renewable energy (RE) sources like wind, solar, biogas and battery is considered. Provision of utility grid insertion is also given if total microgrid sources falls short of supplying the total load. To establish an efficient energy management strategy, a central controller takes the decision based on the status of the loads and sources. The status is obtained with the assistance of multi-agent concept (treating each source and load as an agent). The data acquisition system of these renewable sources and loads consists of multiple sensors interconnected through Low Power Radio over one of many GPRS communication. The Microgrid Central Controller (MGCC) would use an embedded energy management algorithm to take decisions, which are then transmitted to the controllable RE systems to manage the utilization of their power outputs as per the load-supply power balance. A control strategy is adopted to regulate the power output from the battery in case of supply shortage, which results in a floating battery scheme in steady state.
topic Microgrid
Microgrid central controller (MGCC)
Energy management
Renewable energy sources modeling
url http://www.sciencedirect.com/science/article/pii/S2352484715000256
work_keys_str_mv AT zaheeruddin renewableenergymanagementthroughmicrogridcentralcontrollerdesignanapproachtointegratesolarwindandbiomasswithbattery
AT munishmanas renewableenergymanagementthroughmicrogridcentralcontrollerdesignanapproachtointegratesolarwindandbiomasswithbattery
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