Cooperative control strategy for voltage restoration and power allocation in DC microgrids
Author:
Publisher
Springer Science and Business Media LLC
Subject
Electrical and Electronic Engineering,Control and Systems Engineering
Link
https://link.springer.com/content/pdf/10.1007/s43236-020-00101-y.pdf
Reference13 articles.
1. Justo, J.J., Mwasilu, F., Lee, J., Jung, J.-W.: AC-microgrids versus DC-microgrids with distributed energy resources: a review. Renew. Sustain. Energy Rev. 24(C), 387–405 (2013)
2. Dragicevic, T., Vasquez, J.C., Guerrero, J.M., Skrlec, D.: Advanced LVDC electrical power architectures and microgrids: a step toward a new generation of power distribution networks. IEEE Electrif. Mag. 2(1), 54–65 (2014)
3. Diaz, N.L., Dragičević, T., Vasquez, J.C., Guerrero, J.M.: Intelligent distributed generation and storage units for DC microgrids—A new concept on cooperative control without communications beyond droop control. IEEE Trans. Smart Grid. 5(5), 2476–2485 (2014)
4. Chen, F., Burgos, R., Boroyevich, D., Vasquez, J.C., Guerrero, J.M.: Investigation of nonlinear droop control in dc power distribution systems: load sharing, voltage regulation, efficiency, and stability. IEEE Trans. Power Electron. 34(10), 9404–9421 (2019)
5. Dam, D., Lee, H.: A power distributed control method for proportional load power sharing and bus voltage restoration in a DC microgrid. IEEE Trans. Ind. Appl. 54(4), 3616–3625 (2018)
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