Acceso abierto

Configuration strategy and operation mode design under multi-objective optimisation framework in an off-grid optical storage microgrid

, , , ,  y   
17 mar 2025

Cite
Descargar portada

[1] Jinfeng, W., Chunxiu, Y., Fang, L., Xufei, M., Jiangbo, W., & Junhui, L. (2016, October). The development and utilization of new clean energy. In 2016 IEEE international conference on power and renewable energy (ICPRE) (pp. 639-643). IEEE. Jinfeng W. Chunxiu Y. Fang L. Xufei M. Jiangbo W. Junhui L. ( 2016 , October ). The development and utilization of new clean energy . In 2016 IEEE international conference on power and renewable energy (ICPRE) (pp. 639 - 643 ). IEEE . Search in Google Scholar

[2] Gibson, L., Wilman, E. N., & Laurance, W. F. (2017). How green is ‘green’energy?. Trends in ecology & evolution, 32(12), 922-935. Gibson L. Wilman E. N. Laurance W. F. ( 2017 ). How green is ‘green’energy? . Trends in ecology & evolution , 32 ( 12 ), 922 - 935 . Search in Google Scholar

[3] Bhowmik, C., Bhowmik, S., Ray, A., & Pandey, K. M. (2017). Optimal green energy planning for sustainable development: A review. Renewable and Sustainable Energy Reviews, 71, 796-813. Bhowmik C. Bhowmik S. Ray A. Pandey K. M. ( 2017 ). Optimal green energy planning for sustainable development: A review . Renewable and Sustainable Energy Reviews , 71 , 796 - 813 . Search in Google Scholar

[4] Huang, X., Han, T., & Ansari, N. (2015). On green-energy-powered cognitive radio networks. IEEE Communications Surveys & Tutorials, 17(2), 827-842. Huang X. Han T. Ansari N. ( 2015 ). On green-energy-powered cognitive radio networks . IEEE Communications Surveys & Tutorials , 17 ( 2 ), 827 - 842 . Search in Google Scholar

[5] Zhu, Z. B., Sun, S. M., Ding, Y. M., & Huang, S. P. (2023). Research on control strategy of hybrid energy storage system with optical storage microgrid. Journal of Electrical Engineering & Technology, 18(4), 2835-2845. Zhu Z. B. Sun S. M. Ding Y. M. Huang S. P. ( 2023 ). Research on control strategy of hybrid energy storage system with optical storage microgrid . Journal of Electrical Engineering & Technology , 18 ( 4 ), 2835 - 2845 . Search in Google Scholar

[6] Yandong, L., Yiwen, H., Nan, C., Jingyue, W. A. N. G., Xinming, S. H. A. O., Zhongchen, P. E. I., & Chuang, L. I. U. (2022). Study on Power Optimization Method and Coordinated Control Strategy of Optical Storage Microgrid. Journal of Electrical Engineering, 17(1), 22-30. Yandong L. Yiwen H. Nan C. Jingyue W. A. N. G. Xinming S. H. A. O. Zhongchen P. E. I. Chuang L. I. U. ( 2022 ). Study on Power Optimization Method and Coordinated Control Strategy of Optical Storage Microgrid . Journal of Electrical Engineering , 17 ( 1 ), 22 - 30 . Search in Google Scholar

[7] Wang, X., & Zhang, J. (2024, April). Research on an integrated control strategy for grid-connected and off-grid optical storage microgrids. In Journal of Physics: Conference Series (Vol. 2741, No. 1, p. 012050). IOP Publishing. Wang X. Zhang J. ( 2024 , April ). Research on an integrated control strategy for grid-connected and off-grid optical storage microgrids . In Journal of Physics: Conference Series (Vol. 2741 , No. 1 , p. 012050 ). IOP Publishing . Search in Google Scholar

[8] Wu, J., Xu, A., Peng, Y., Zhang, X., Li, Z., & Feng, Y. (2023, September). Research on the operation control strategy of optical storage and DC microgrid. In Journal of Physics: Conference Series (Vol. 2592, No. 1, p. 012088). IOP Publishing. Wu J. Xu A. Peng Y. Zhang X. Li Z. Feng Y. ( 2023 , September ). Research on the operation control strategy of optical storage and DC microgrid . In Journal of Physics: Conference Series (Vol. 2592 , No. 1 , p. 012088 ). IOP Publishing . Search in Google Scholar

[9] Maulik, A. (2022). Probabilistic power management of a grid-connected microgrid considering electric vehicles, demand response, smart transformers, and soft open points. Sustainable Energy, Grids and Networks, 30, 100636. Maulik A. ( 2022 ). Probabilistic power management of a grid-connected microgrid considering electric vehicles, demand response, smart transformers, and soft open points . Sustainable Energy, Grids and Networks , 30 , 100636 . Search in Google Scholar

[10] Wu, Y., & Meng, Z. (2022, August). Coordinated control study of optical storage DC microgrid system. In 2022 Power System and Green Energy Conference (PSGEC) (pp. 91-95). IEEE. Wu Y. Meng Z. ( 2022 , August ). Coordinated control study of optical storage DC microgrid system . In 2022 Power System and Green Energy Conference (PSGEC) (pp. 91 - 95 ). IEEE . Search in Google Scholar

[11] Yang, C., Meng, T., Ma, H., Qi, S., & Jia, Z. (2023, June). Research on Optimal Operation of Low Carbon Rural Microgrid Integrated with Optical Storage and Charging. In Journal of Physics: Conference Series (Vol. 2527, No. 1, p. 012007). IOP Publishing. Yang C. Meng T. Ma H. Qi S. Jia Z. ( 2023 , June ). Research on Optimal Operation of Low Carbon Rural Microgrid Integrated with Optical Storage and Charging . In Journal of Physics: Conference Series (Vol. 2527 , No. 1 , p. 012007 ). IOP Publishing . Search in Google Scholar

[12] Wen, H., & Yang, R. (2016, October). Power management of Solid State Transformer in microgrids. In 2016 IEEE PES Asia-Pacific Power and Energy Engineering Conference (APPEEC) (pp. 1399-1404). IEEE. Wen H. Yang R. ( 2016 , October ). Power management of Solid State Transformer in microgrids . In 2016 IEEE PES Asia-Pacific Power and Energy Engineering Conference (APPEEC) (pp. 1399 - 1404 ). IEEE . Search in Google Scholar

[13] Rodrigues, W. A., Morais, L. M. F., Oliveira, T. R., Santana, R. A. S., Cota, A. P. L., & Silva, W. W. A. G. (2016, November). Analysis of solid state transformer based microgrid system. In 2016 12th IEEE International Conference on Industry Applications (INDUSCON) (pp. 1-6). IEEE. Rodrigues W. A. Morais L. M. F. Oliveira T. R. Santana R. A. S. Cota A. P. L. Silva W. W. A. G. ( 2016 , November ). Analysis of solid state transformer based microgrid system . In 2016 12th IEEE International Conference on Industry Applications (INDUSCON) (pp. 1 - 6 ). IEEE . Search in Google Scholar

[14] Tianqi, L., Jing, G., Fang, L., Guochen, Y., & Mingze, S. (2023). Comprehensive research on hybrid energy storage strategies of park microgrids with optical storage and DC microgrids. Academic Journal of Engineering and Technology Science, 6(1), 31-35. Tianqi L. Jing G. Fang L. Guochen Y. Mingze S. ( 2023 ). Comprehensive research on hybrid energy storage strategies of park microgrids with optical storage and DC microgrids . Academic Journal of Engineering and Technology Science , 6 ( 1 ), 31 - 35 . Search in Google Scholar

[15] Lu, T., Jing, L. F., Yang, G., & Mingze, S. (2022). COMPREHENSIVE RESEARCH ON HYBRID ENERGY STORAGE STRATEGIES OF PARK MICROGRIDS WITH OPTICAL STORAGE AND DC MICROGRIDS. Interdisciplinary Journal of Engineering and Environmental Sciences, 9(3), 17-21. Lu T. Jing L. F. Yang G. Mingze S. ( 2022 ). COMPREHENSIVE RESEARCH ON HYBRID ENERGY STORAGE STRATEGIES OF PARK MICROGRIDS WITH OPTICAL STORAGE AND DC MICROGRIDS . Interdisciplinary Journal of Engineering and Environmental Sciences , 9 ( 3 ), 17 - 21 . Search in Google Scholar

[16] Kitson, J., Williamson, S. J., Harper, P. W., McMahon, C. A., Rosenberg, G., Tierney, M. J., … & Gautam, B. (2018). Modelling of an expandable, reconfigurable, renewable DC microgrid for off-grid communities. Energy, 160, 142-153. Kitson J. Williamson S. J. Harper P. W. McMahon C. A. Rosenberg G. Tierney M. J. Gautam B. ( 2018 ). Modelling of an expandable, reconfigurable, renewable DC microgrid for off-grid communities . Energy , 160 , 142 - 153 . Search in Google Scholar

[17] Liu, L., Wang, Y. C., Shi, S. J., & Liu, C. (2014). Research of DC Micro-Grid Photovoltaic Energy Storage System Control Strategy. Advanced Materials Research, 860, 2474-2480. Liu L. Wang Y. C. Shi S. J. Liu C. ( 2014 ). Research of DC Micro-Grid Photovoltaic Energy Storage System Control Strategy . Advanced Materials Research , 860 , 2474 - 2480 . Search in Google Scholar

[18] Hrishikesan, V. M., Kumar, C., & Liserre, M. (2021). An mvdc-based meshed hybrid microgrid enabled using smart transformers. IEEE Transactions on Industrial Electronics, 69(4), 3722-3731. Hrishikesan V. M. Kumar C. Liserre M. ( 2021 ). An mvdc-based meshed hybrid microgrid enabled using smart transformers . IEEE Transactions on Industrial Electronics , 69 ( 4 ), 3722 - 3731 . Search in Google Scholar

[19] Li Ming & Li Jiaqi. (2022). A System Management Method for Photovoltaic Microgrid Based on Energy Circuit. IEEJ Transactions on Electrical and Electronic Engineering(7),1008-1015. Ming Li Jiaqi Li ( 2022 ). A System Management Method for Photovoltaic Microgrid Based on Energy Circuit . IEEJ Transactions on Electrical and Electronic Engineering ( 7 ), 1008 - 1015 . Search in Google Scholar

[20] Nan Zhou, Nian Liu, Jianhua Zhang & Jinyong Lei. (2016). Multi-Objective Optimal Sizing for Battery Storage of PV-Based Microgrid with Demand Response. Energies(8). Zhou Nan Liu Nian Zhang Jianhua Lei Jinyong ( 2016 ). Multi-Objective Optimal Sizing for Battery Storage of PV-Based Microgrid with Demand Response . Energies ( 8 ). Search in Google Scholar

[21] HasithJayasinghe, KosalaGunawardane & RamonZamora. (2024). Multi-objective optimisation framework for standalone DC-microgrids with direct load control in demand-side management. Electronics Letters(15), e13290-e13290. Jayasinghe Hasith Gunawardane Kosala Zamora Ramon ( 2024 ). Multi-objective optimisation framework for standalone DC-microgrids with direct load control in demand-side management . Electronics Letters ( 15 ), e13290 - e13290 . Search in Google Scholar

[22] Fei Long ,Bo Jin ,Huan Xu ,Jingjing Wang ,Jyoti Bhola& Shavkatov Navruzbek Shavkatovich. (2023). Research on Multi-Objective Optimization of Smart Grid Based on Particle Swarm Optimization. ELECTRICA(2),222-230. Long Fei Jin Bo Xu Huan Wang Jingjing Bhola Jyoti Shavkatovich Shavkatov Navruzbek ( 2023 ). Research on Multi-Objective Optimization of Smart Grid Based on Particle Swarm Optimization . ELECTRICA ( 2 ), 222 - 230 . Search in Google Scholar