Reliability of different building microgrids

With the implementation of the concept of smart microgrid and the increasing maturity of renewable energy and distributed generation technologies, how to use electricity more efficiently and environmentally friendly has become the focus of attention. Residential and commercial buildings consume 32%...

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Main Author: Meng, Zihao
Other Authors: Wang Peng
Format: Thesis-Master by Coursework
Language:English
Published: Nanyang Technological University 2022
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Online Access:https://hdl.handle.net/10356/161556
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1615562022-09-08T00:41:20Z Reliability of different building microgrids Meng, Zihao Wang Peng School of Electrical and Electronic Engineering epwang@ntu.edu.sg Engineering::Electrical and electronic engineering With the implementation of the concept of smart microgrid and the increasing maturity of renewable energy and distributed generation technologies, how to use electricity more efficiently and environmentally friendly has become the focus of attention. Residential and commercial buildings consume 32% of total global energy, and when upstream indirect emissions are considered, they account for about 30% of total end-use energy-related CO2 emissions. Therefore, how to improve the efficiency of energy use in buildings and achieve the goal of nearly zero energy buildings (nZEB) has become a priority. In addition to the common electrical loads and traditional fossil energy generating units, renewable energy sources, mainly photovoltaic power, are now installed in building microgrids. Also, with the rise of electric vehicles, energy storage systems have become an integral part of building microgrids. In addition to electrical energy, thermal energy cycles are often considered in the energy cycle of building microgrids due to the presence of air conditioning, heating and other temperature regulating devices in the building. However, because of the complex topology of building microgrids, which usually have both DC and AC components, as well as the variety of load types and the unpredictability of their power consumption behavior, coupled with the uncertainty of renewable energy, how to ensure the reliability of building microgrids has become a critical issue. In this dissertation, the impact of renewable energy and energy storage system on the reliability of building microgrid is analyzed by building a model of building microgrid containing renewable energy and energy storage system which is simulated using the Monte Carlo simulation method. Master of Science (Power Engineering) 2022-09-08T00:41:20Z 2022-09-08T00:41:20Z 2022 Thesis-Master by Coursework Meng, Z. (2022). Reliability of different building microgrids. Master's thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/161556 https://hdl.handle.net/10356/161556 en application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Electrical and electronic engineering
spellingShingle Engineering::Electrical and electronic engineering
Meng, Zihao
Reliability of different building microgrids
description With the implementation of the concept of smart microgrid and the increasing maturity of renewable energy and distributed generation technologies, how to use electricity more efficiently and environmentally friendly has become the focus of attention. Residential and commercial buildings consume 32% of total global energy, and when upstream indirect emissions are considered, they account for about 30% of total end-use energy-related CO2 emissions. Therefore, how to improve the efficiency of energy use in buildings and achieve the goal of nearly zero energy buildings (nZEB) has become a priority. In addition to the common electrical loads and traditional fossil energy generating units, renewable energy sources, mainly photovoltaic power, are now installed in building microgrids. Also, with the rise of electric vehicles, energy storage systems have become an integral part of building microgrids. In addition to electrical energy, thermal energy cycles are often considered in the energy cycle of building microgrids due to the presence of air conditioning, heating and other temperature regulating devices in the building. However, because of the complex topology of building microgrids, which usually have both DC and AC components, as well as the variety of load types and the unpredictability of their power consumption behavior, coupled with the uncertainty of renewable energy, how to ensure the reliability of building microgrids has become a critical issue. In this dissertation, the impact of renewable energy and energy storage system on the reliability of building microgrid is analyzed by building a model of building microgrid containing renewable energy and energy storage system which is simulated using the Monte Carlo simulation method.
author2 Wang Peng
author_facet Wang Peng
Meng, Zihao
format Thesis-Master by Coursework
author Meng, Zihao
author_sort Meng, Zihao
title Reliability of different building microgrids
title_short Reliability of different building microgrids
title_full Reliability of different building microgrids
title_fullStr Reliability of different building microgrids
title_full_unstemmed Reliability of different building microgrids
title_sort reliability of different building microgrids
publisher Nanyang Technological University
publishDate 2022
url https://hdl.handle.net/10356/161556
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