Development of an Energy Monitoring System with Forecasting for Off-Grid Microgrids

The need for energy, especially energy from renewable sources, to be distributed and flexible has driven the development of microgrids in recent years. They have been a key technology in achieving the sustainable development goal for energy particularly in rural off-grid areas. However, safe and rel...

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Main Authors: Peña, Robert Alfie S, Castro, Antonio Rafael, Macabebe, Erees Queen B.
Format: text
Published: Archīum Ateneo 2023
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Online Access:https://archium.ateneo.edu/ecce-faculty-pubs/142
https://doi.org/10.1109/CPESE59653.2023.10303213
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Institution: Ateneo De Manila University
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spelling ph-ateneo-arc.ecce-faculty-pubs-11362024-02-21T07:31:57Z Development of an Energy Monitoring System with Forecasting for Off-Grid Microgrids Peña, Robert Alfie S Castro, Antonio Rafael Macabebe, Erees Queen B. The need for energy, especially energy from renewable sources, to be distributed and flexible has driven the development of microgrids in recent years. They have been a key technology in achieving the sustainable development goal for energy particularly in rural off-grid areas. However, safe and reliable operation of microgrids remains a challenge given the difficulty in maintaining the physical system due to the lack of technical know-how in the rural localities where they are installed. A monitoring system with power forecasting capability is proposed in this article to aid in the safe and reliable operation of microgrids. The monitoring system features galvanic isolation in both the ac and dc measurement modules protecting users and the monitoring system itself from the high currents of the microgrid power system. The measurements can then be fed into a machine learning algorithm to forecast the power output of the microgrid. Experimental data were presented to validate the measurements and forecasts of the monitoring system. Users can monitor and forecast the power output of a microgrid and conduct maintenance if significant deviations are observed between forecasts and measurements. 2023-01-01T08:00:00Z text https://archium.ateneo.edu/ecce-faculty-pubs/142 https://doi.org/10.1109/CPESE59653.2023.10303213 Electronics, Computer, and Communications Engineering Faculty Publications Archīum Ateneo energy measurement forecasting microgrids monitoring power measurement solar power generation Electrical and Computer Engineering Engineering Oil, Gas, and Energy Power and Energy Sustainability
institution Ateneo De Manila University
building Ateneo De Manila University Library
continent Asia
country Philippines
Philippines
content_provider Ateneo De Manila University Library
collection archium.Ateneo Institutional Repository
topic energy measurement
forecasting
microgrids
monitoring
power measurement
solar power generation
Electrical and Computer Engineering
Engineering
Oil, Gas, and Energy
Power and Energy
Sustainability
spellingShingle energy measurement
forecasting
microgrids
monitoring
power measurement
solar power generation
Electrical and Computer Engineering
Engineering
Oil, Gas, and Energy
Power and Energy
Sustainability
Peña, Robert Alfie S
Castro, Antonio Rafael
Macabebe, Erees Queen B.
Development of an Energy Monitoring System with Forecasting for Off-Grid Microgrids
description The need for energy, especially energy from renewable sources, to be distributed and flexible has driven the development of microgrids in recent years. They have been a key technology in achieving the sustainable development goal for energy particularly in rural off-grid areas. However, safe and reliable operation of microgrids remains a challenge given the difficulty in maintaining the physical system due to the lack of technical know-how in the rural localities where they are installed. A monitoring system with power forecasting capability is proposed in this article to aid in the safe and reliable operation of microgrids. The monitoring system features galvanic isolation in both the ac and dc measurement modules protecting users and the monitoring system itself from the high currents of the microgrid power system. The measurements can then be fed into a machine learning algorithm to forecast the power output of the microgrid. Experimental data were presented to validate the measurements and forecasts of the monitoring system. Users can monitor and forecast the power output of a microgrid and conduct maintenance if significant deviations are observed between forecasts and measurements.
format text
author Peña, Robert Alfie S
Castro, Antonio Rafael
Macabebe, Erees Queen B.
author_facet Peña, Robert Alfie S
Castro, Antonio Rafael
Macabebe, Erees Queen B.
author_sort Peña, Robert Alfie S
title Development of an Energy Monitoring System with Forecasting for Off-Grid Microgrids
title_short Development of an Energy Monitoring System with Forecasting for Off-Grid Microgrids
title_full Development of an Energy Monitoring System with Forecasting for Off-Grid Microgrids
title_fullStr Development of an Energy Monitoring System with Forecasting for Off-Grid Microgrids
title_full_unstemmed Development of an Energy Monitoring System with Forecasting for Off-Grid Microgrids
title_sort development of an energy monitoring system with forecasting for off-grid microgrids
publisher Archīum Ateneo
publishDate 2023
url https://archium.ateneo.edu/ecce-faculty-pubs/142
https://doi.org/10.1109/CPESE59653.2023.10303213
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