Power Distribution Strategy of Microgrid Hybrid Energy Storage System Based on Improved Hierarchical Control
Traditional hierarchical control of the microgrid does not consider the energy storage status of a distributed hybrid energy storage system. This leads to the inconsistency of the remaining capacity of the energy storage system in the process of system operation, which is not conducive to the safe a...
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doaj-ba8310f1be404b3aba1430a69d9bf7822020-11-25T01:08:56ZengMDPI AGEnergies1996-10732019-09-011218349810.3390/en12183498en12183498Power Distribution Strategy of Microgrid Hybrid Energy Storage System Based on Improved Hierarchical ControlTiezhou Wu0Wenshan Yu1Lujun Wang2Linxin Guo3Zhiquan Tang4Hubei Key Laboratory for High-efficiency Utilization of Solar Energy and Operation Control of Energy Storage System, Hubei University of Technology, Wuhan 430068, ChinaHubei Key Laboratory for High-efficiency Utilization of Solar Energy and Operation Control of Energy Storage System, Hubei University of Technology, Wuhan 430068, ChinaHubei Key Laboratory for High-efficiency Utilization of Solar Energy and Operation Control of Energy Storage System, Hubei University of Technology, Wuhan 430068, ChinaHanjiang Water Resources & Hydropower Group Co., Ltd., Danjiangkou Hydropower Plant, Danjiangkou 442700, ChinaHanjiang Water Resources & Hydropower Group Co., Ltd., Danjiangkou Hydropower Plant, Danjiangkou 442700, ChinaTraditional hierarchical control of the microgrid does not consider the energy storage status of a distributed hybrid energy storage system. This leads to the inconsistency of the remaining capacity of the energy storage system in the process of system operation, which is not conducive to the safe and stable operation of the system. In this paper, an improved hierarchical control strategy is proposed: the first allocation layer completes the allocation between the distribution energy storage systems considering the state of hybrid energy storage systems, and the second allocation layer realizes the allocation within the hybrid energy storage systems based on variable time constant low-pass filtering. Considering the extreme conditions of energy storage systems, the transfer current is introduced in the second allocation process. The SOC (stage of charge) of the supercapacitor is between 40% and 60%, which ensures that the supercapacitor has enough margin to respond to the power demand. An example of a 300 MW photovoltaic microgrid system in a certain area is analyzed. Compared with the traditional hierarchical control, the proposed control strategy can reduce the SOC change of a hybrid energy storage system by 9% under the same conditions, and make the supercapacitor active after power stabilization, which is helpful to the stable operation of the microgrid.https://www.mdpi.com/1996-1073/12/18/3498distributed hybrid energy storage system (D-HESS)improved low pass filterhierarchical controlpower management strategyLi-ion batterysupercapacitors |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tiezhou Wu Wenshan Yu Lujun Wang Linxin Guo Zhiquan Tang |
spellingShingle |
Tiezhou Wu Wenshan Yu Lujun Wang Linxin Guo Zhiquan Tang Power Distribution Strategy of Microgrid Hybrid Energy Storage System Based on Improved Hierarchical Control Energies distributed hybrid energy storage system (D-HESS) improved low pass filter hierarchical control power management strategy Li-ion battery supercapacitors |
author_facet |
Tiezhou Wu Wenshan Yu Lujun Wang Linxin Guo Zhiquan Tang |
author_sort |
Tiezhou Wu |
title |
Power Distribution Strategy of Microgrid Hybrid Energy Storage System Based on Improved Hierarchical Control |
title_short |
Power Distribution Strategy of Microgrid Hybrid Energy Storage System Based on Improved Hierarchical Control |
title_full |
Power Distribution Strategy of Microgrid Hybrid Energy Storage System Based on Improved Hierarchical Control |
title_fullStr |
Power Distribution Strategy of Microgrid Hybrid Energy Storage System Based on Improved Hierarchical Control |
title_full_unstemmed |
Power Distribution Strategy of Microgrid Hybrid Energy Storage System Based on Improved Hierarchical Control |
title_sort |
power distribution strategy of microgrid hybrid energy storage system based on improved hierarchical control |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2019-09-01 |
description |
Traditional hierarchical control of the microgrid does not consider the energy storage status of a distributed hybrid energy storage system. This leads to the inconsistency of the remaining capacity of the energy storage system in the process of system operation, which is not conducive to the safe and stable operation of the system. In this paper, an improved hierarchical control strategy is proposed: the first allocation layer completes the allocation between the distribution energy storage systems considering the state of hybrid energy storage systems, and the second allocation layer realizes the allocation within the hybrid energy storage systems based on variable time constant low-pass filtering. Considering the extreme conditions of energy storage systems, the transfer current is introduced in the second allocation process. The SOC (stage of charge) of the supercapacitor is between 40% and 60%, which ensures that the supercapacitor has enough margin to respond to the power demand. An example of a 300 MW photovoltaic microgrid system in a certain area is analyzed. Compared with the traditional hierarchical control, the proposed control strategy can reduce the SOC change of a hybrid energy storage system by 9% under the same conditions, and make the supercapacitor active after power stabilization, which is helpful to the stable operation of the microgrid. |
topic |
distributed hybrid energy storage system (D-HESS) improved low pass filter hierarchical control power management strategy Li-ion battery supercapacitors |
url |
https://www.mdpi.com/1996-1073/12/18/3498 |
work_keys_str_mv |
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1725180920096358400 |