A review of hierarchical energy management system in networked microgrids for optimal inter-microgrid power exchange
A networked microgrid (NMG) is a novel cyber-physical system that provides power to urban and rural com munities. The benefits of NMG that coupled with hierarchical energy management system (EMS) include increased renewable energy utilization, reliability, system efficiency, and flexibility in inte...
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A networked microgrid (NMG) is a novel cyber-physical system that provides power to urban and rural com
munities. The benefits of NMG that coupled with hierarchical energy management system (EMS) include increased renewable energy utilization, reliability, system efficiency, and flexibility in inter-microgrid (MG) power exchange (PX). Nevertheless, achieving secure and optimal NMG operation would require hierarchical EMS strategies that can manage uncertainties such as renewable generation fluctuations, load variation, energy prices, and flexible bidirectional PX. This paper outlines the NMG concept and various power balance methods. Subsequently, a comprehensive review of hierarchical EMS designs for NMG is presented. Four NMG models are introduced, and a comparison of various EMS strategies based on objectives, constraints, and optimization
methods is also elaborated. Additionally, this paper addresses flexible bidirectional power flow between multiple MGs and the utility grid (UG) within three PX scenarios (MG-to-MG, MG-to-UG, and UG-to-MG). The advantages and challenges of hierarchical EMS for NMG with bidirectional power flow are also discussed considering grid stability, economic viability, and environmental impact. Finally, future research directions for enhancing the NMG model for optimal inter-MG PX are established. It highlights the efficient hierarchical EMS strategies and optimization algorithms for more reliable, affordable, and sustainable NMG operation. |
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Article |
author |
Abdullah, Mohd Noor Mohd Yassim, Halyani Gan, Chin Kim Ahmed, Asif |
spellingShingle |
Abdullah, Mohd Noor Mohd Yassim, Halyani Gan, Chin Kim Ahmed, Asif A review of hierarchical energy management system in networked microgrids for optimal inter-microgrid power exchange |
author_facet |
Abdullah, Mohd Noor Mohd Yassim, Halyani Gan, Chin Kim Ahmed, Asif |
author_sort |
Abdullah, Mohd Noor |
title |
A review of hierarchical energy management system in networked microgrids for optimal inter-microgrid power exchange |
title_short |
A review of hierarchical energy management system in networked microgrids for optimal inter-microgrid power exchange |
title_full |
A review of hierarchical energy management system in networked microgrids for optimal inter-microgrid power exchange |
title_fullStr |
A review of hierarchical energy management system in networked microgrids for optimal inter-microgrid power exchange |
title_full_unstemmed |
A review of hierarchical energy management system in networked microgrids for optimal inter-microgrid power exchange |
title_sort |
review of hierarchical energy management system in networked microgrids for optimal inter-microgrid power exchange |
publisher |
Elsevier B.V. |
publishDate |
2024 |
url |
http://eprints.utem.edu.my/id/eprint/28355/2/02416251120241236181289.pdf http://eprints.utem.edu.my/id/eprint/28355/ https://pdf.sciencedirectassets.com/271091/1-s2.0-S0378779624X00036/1-s2.0-S0378779624002177/main.pdf?X-Amz-Security-Token=IQoJb3JpZ2luX2VjEAoaCXVzLWVhc3QtMSJHMEUCIQCoKF9vNmfpFULZ%2BbJ4Aq%2BBRUum%2F0LZj5zavyeF1jP7GgIgUxQaFVkFiDrvoeJo5kumu%2FyTQfDbZNBUq17QeuPidVMquwUI4%2F%2F%2F%2F%2F%2F%2F%2F%2F%2F%2FARAFGgwwNTkwMDM1NDY4NjUiDDEVGZZllm2qGO0%2BViqPBY5W2f8d7KiU%2Fw%2FjiFVJTa2rJkjBp%2BI7Q7b%2F3PrQRJlpcvmn3ZY5j2V28Gld1%2BXz2%2B2Sy3dyvB%2BGirbZ4Gr0NQP6GhTkTAD4wkdyrfhIQQJW1f6S7QN95iofESYXxfE4AZ7nlg%2BDkaniXNQvXgz9I%2But7ODf8U%2FfkgeujOsEq%2By1avFe1YbiE1GXb0N6B3oBn9UooYLn4KcqicC7Udv28YyH9v8MYRyC4ghLmZd4PaTT2eBNN9%2BRFibm3x6DNwt6hKMHAdC%2BnJH0Rx45zX0vgTUOk92tg%2BnvbjY7u2z9qF4%2Bux3AD6Pu4TZDgUC1wFqP4linSph17qwlLaETfTLGcZ9fegHn%2Ffu5bJswQVo%2Fsy8YNNMzF1aVCqVAZGp9OJ95uZ1dBUNItnfa3ITWuZciBfgnkCSMKPPvovxeNswZcyGDFWfYwwHzbUe3hP%2FIM6OgkMMHIZK9UxRl5Y0iZMj2yopIy9Y413vybd82u3BWZDDGmVeI%2BW2%2F5Z%2BZMOVVRrGA8MjOJqod%2B%2FCYXY4jBDMXafN03hSg7JdSuEp0cnpuxylXFsleNlp6Z%2FBLfrN0XaxRK7GstmiUk0SWc%2FDqEnH%2Bz9JjWNPsuUhMHxDbEKqLVVuPczqOoFvQ%2BZUjPICKTlG3hOuMR0ndvzVaiYggLNt8lAj7JVUjV6fnKLEX4HLVkWuKELz0Bv7i6kEPuWfKW%2Fn30WmQmLWXoiQeFvkk%2BQTvQz0pEU3JC9Nw2spZKD8MqIINE1izeVK9IgfyaCuBD8kPwpexmO7Vv64xzkVh%2BRFWoVOTb7pZDa0VFrc%2FK%2FrV8BhVI0QUsyLoj1t87uQcbUi%2FvWB2RG0wQLa5VakUP%2BHaosFD6jarKGKc6M9mOI5Ykdcwl4nduwY6sQEW5Nk34hK9jJI3HswWVloVVbChimqbyNnSsa%2FpySuvN9v6rJEu1op0PfDgNFhN5brb3RS%2Bba70t5eQIfOVadtJTj7T6nExNZikCCTMO0RGyCgbF1tQyzCJpLWgBn%2BJgd6eFeHWJer5mgvGM7KU6CRaVwTrMmqLjJffZiXVb0QUETpDtOeXY%2F5Fu8lW9FvApcJpCfIFamZgoh01yUVQam1bQep%2BOgVzzhWxxxWmaV%2FWppA%3D&X-Amz-Algorithm=AWS4-HMAC-SHA256&X-Amz-Date=20250103T025033Z&X-Amz-SignedHeaders=host&X-Amz-Expires=300&X-Amz-Credential=ASIAQ3PHCVTY4VDWYMVY%2F20250103%2Fus-east-1%2Fs3%2Faws4_request&X-Amz-Signature=1c44a0d9d22f8d507e4652ed48537d9bbf28ca76f42be79ff34fb708e5abba0b&hash=f59cd49d994104ba688d25a365936db478bcfe0136e2103411efcbd3bbc02b27&host=68042c943591013ac2b2430a89b270f6af2c76d8dfd086a07176afe7c76c2c61&pii=S0378779624002177&tid=spdf-14f32dec-b01b-4cbc-b936-b9bcbcda6bd3&sid=39d67561924fa748172b20c8930b665ec3fdgxrqb&type=client&tsoh=d3d3LnNjaWVuY2VkaXJlY3QuY29t&ua=0b195e0204040e005a56&rr=8fbfae957e9013e5&cc=my https://doi.org/10.1016/j.epsr.2024.110329 |
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my.utem.eprints.283552025-02-05T10:51:43Z http://eprints.utem.edu.my/id/eprint/28355/ A review of hierarchical energy management system in networked microgrids for optimal inter-microgrid power exchange Abdullah, Mohd Noor Mohd Yassim, Halyani Gan, Chin Kim Ahmed, Asif A networked microgrid (NMG) is a novel cyber-physical system that provides power to urban and rural com munities. The benefits of NMG that coupled with hierarchical energy management system (EMS) include increased renewable energy utilization, reliability, system efficiency, and flexibility in inter-microgrid (MG) power exchange (PX). Nevertheless, achieving secure and optimal NMG operation would require hierarchical EMS strategies that can manage uncertainties such as renewable generation fluctuations, load variation, energy prices, and flexible bidirectional PX. This paper outlines the NMG concept and various power balance methods. Subsequently, a comprehensive review of hierarchical EMS designs for NMG is presented. Four NMG models are introduced, and a comparison of various EMS strategies based on objectives, constraints, and optimization methods is also elaborated. Additionally, this paper addresses flexible bidirectional power flow between multiple MGs and the utility grid (UG) within three PX scenarios (MG-to-MG, MG-to-UG, and UG-to-MG). The advantages and challenges of hierarchical EMS for NMG with bidirectional power flow are also discussed considering grid stability, economic viability, and environmental impact. Finally, future research directions for enhancing the NMG model for optimal inter-MG PX are established. It highlights the efficient hierarchical EMS strategies and optimization algorithms for more reliable, affordable, and sustainable NMG operation. Elsevier B.V. 2024-06 Article PeerReviewed text en cc_by_nc_nd_4 http://eprints.utem.edu.my/id/eprint/28355/2/02416251120241236181289.pdf Abdullah, Mohd Noor and Mohd Yassim, Halyani and Gan, Chin Kim and Ahmed, Asif (2024) A review of hierarchical energy management system in networked microgrids for optimal inter-microgrid power exchange. Electric Power Systems Research, 231. pp. 1-12. ISSN 0378-7796 https://pdf.sciencedirectassets.com/271091/1-s2.0-S0378779624X00036/1-s2.0-S0378779624002177/main.pdf?X-Amz-Security-Token=IQoJb3JpZ2luX2VjEAoaCXVzLWVhc3QtMSJHMEUCIQCoKF9vNmfpFULZ%2BbJ4Aq%2BBRUum%2F0LZj5zavyeF1jP7GgIgUxQaFVkFiDrvoeJo5kumu%2FyTQfDbZNBUq17QeuPidVMquwUI4%2F%2F%2F%2F%2F%2F%2F%2F%2F%2F%2FARAFGgwwNTkwMDM1NDY4NjUiDDEVGZZllm2qGO0%2BViqPBY5W2f8d7KiU%2Fw%2FjiFVJTa2rJkjBp%2BI7Q7b%2F3PrQRJlpcvmn3ZY5j2V28Gld1%2BXz2%2B2Sy3dyvB%2BGirbZ4Gr0NQP6GhTkTAD4wkdyrfhIQQJW1f6S7QN95iofESYXxfE4AZ7nlg%2BDkaniXNQvXgz9I%2But7ODf8U%2FfkgeujOsEq%2By1avFe1YbiE1GXb0N6B3oBn9UooYLn4KcqicC7Udv28YyH9v8MYRyC4ghLmZd4PaTT2eBNN9%2BRFibm3x6DNwt6hKMHAdC%2BnJH0Rx45zX0vgTUOk92tg%2BnvbjY7u2z9qF4%2Bux3AD6Pu4TZDgUC1wFqP4linSph17qwlLaETfTLGcZ9fegHn%2Ffu5bJswQVo%2Fsy8YNNMzF1aVCqVAZGp9OJ95uZ1dBUNItnfa3ITWuZciBfgnkCSMKPPvovxeNswZcyGDFWfYwwHzbUe3hP%2FIM6OgkMMHIZK9UxRl5Y0iZMj2yopIy9Y413vybd82u3BWZDDGmVeI%2BW2%2F5Z%2BZMOVVRrGA8MjOJqod%2B%2FCYXY4jBDMXafN03hSg7JdSuEp0cnpuxylXFsleNlp6Z%2FBLfrN0XaxRK7GstmiUk0SWc%2FDqEnH%2Bz9JjWNPsuUhMHxDbEKqLVVuPczqOoFvQ%2BZUjPICKTlG3hOuMR0ndvzVaiYggLNt8lAj7JVUjV6fnKLEX4HLVkWuKELz0Bv7i6kEPuWfKW%2Fn30WmQmLWXoiQeFvkk%2BQTvQz0pEU3JC9Nw2spZKD8MqIINE1izeVK9IgfyaCuBD8kPwpexmO7Vv64xzkVh%2BRFWoVOTb7pZDa0VFrc%2FK%2FrV8BhVI0QUsyLoj1t87uQcbUi%2FvWB2RG0wQLa5VakUP%2BHaosFD6jarKGKc6M9mOI5Ykdcwl4nduwY6sQEW5Nk34hK9jJI3HswWVloVVbChimqbyNnSsa%2FpySuvN9v6rJEu1op0PfDgNFhN5brb3RS%2Bba70t5eQIfOVadtJTj7T6nExNZikCCTMO0RGyCgbF1tQyzCJpLWgBn%2BJgd6eFeHWJer5mgvGM7KU6CRaVwTrMmqLjJffZiXVb0QUETpDtOeXY%2F5Fu8lW9FvApcJpCfIFamZgoh01yUVQam1bQep%2BOgVzzhWxxxWmaV%2FWppA%3D&X-Amz-Algorithm=AWS4-HMAC-SHA256&X-Amz-Date=20250103T025033Z&X-Amz-SignedHeaders=host&X-Amz-Expires=300&X-Amz-Credential=ASIAQ3PHCVTY4VDWYMVY%2F20250103%2Fus-east-1%2Fs3%2Faws4_request&X-Amz-Signature=1c44a0d9d22f8d507e4652ed48537d9bbf28ca76f42be79ff34fb708e5abba0b&hash=f59cd49d994104ba688d25a365936db478bcfe0136e2103411efcbd3bbc02b27&host=68042c943591013ac2b2430a89b270f6af2c76d8dfd086a07176afe7c76c2c61&pii=S0378779624002177&tid=spdf-14f32dec-b01b-4cbc-b936-b9bcbcda6bd3&sid=39d67561924fa748172b20c8930b665ec3fdgxrqb&type=client&tsoh=d3d3LnNjaWVuY2VkaXJlY3QuY29t&ua=0b195e0204040e005a56&rr=8fbfae957e9013e5&cc=my https://doi.org/10.1016/j.epsr.2024.110329 |
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