Interconnection and Damping Assignment Passivity Based Control for Power Sharing in Islanded Micro-Grids
Authors
N. Khefifi, A. Houari, M. Machmoum, M. Ghanes
Abstract
This paper proposes an Interconnection and Damping Assignment Passivity Based Control (IDA-PBC) to ensure accurate power sharing in islanded Micro-Grids (MG). This energy control approach is chosen for its proprieties that allow the synthesis of robust control laws that guarantee the whole system stability. For this aim, the power system circuit and the classical droop control are firstly presented in Port Controlled Hamiltonian (PCH) form. Then voltage and droop controllers design methodology is detailed. The validity of this control configuration is verified through simulation results.
Citation
- Journal: 2018 7th International Conference on Renewable Energy Research and Applications (ICRERA)
- Year: 2018
- Volume:
- Issue:
- Pages: 1157–1161
- Publisher: IEEE
- DOI: 10.1109/icrera.2018.8566718
BibTeX
@inproceedings{Khefifi_2018,
title={{Interconnection and Damping Assignment Passivity Based Control for Power Sharing in Islanded Micro-Grids}},
DOI={10.1109/icrera.2018.8566718},
booktitle={{2018 7th International Conference on Renewable Energy Research and Applications (ICRERA)}},
publisher={IEEE},
author={Khefifi, N. and Houari, A. and Machmoum, M. and Ghanes, M.},
year={2018},
pages={1157--1161}
}
References
- Guerrero, J. M., Hang, L. & Uceda, J. Control of Distributed Uninterruptible Power Supply Systems. IEEE Trans. Ind. Electron. 55, 2845–2859 (2008) – 10.1109/tie.2008.924173
- Xu, B., Liu, F. & Chen, W. Modeling and simulation for the power sharing of micro-grid inverter. 2014 International Conference on Renewable Energy Research and Application (ICRERA) 623–627 (2014) doi:10.1109/icrera.2014.7016460 – 10.1109/icrera.2014.7016460
- bouzid, Generalized Predictive Control of Standalone Wind Energy Generation System. International Journal of Renewable Energy Research (IJRER) (2016)
- Cao, W., Su, H., Cao, J., Sun, J. & Yang, D. Improved droop control method in microgrid and its small signal stability analysis. 2014 International Conference on Renewable Energy Research and Application (ICRERA) 197–202 (2014) doi:10.1109/icrera.2014.7016556 – 10.1109/icrera.2014.7016556
- Han, Y., Li, H., Shen, P., Coelho, E. A. A. & Guerrero, J. M. Review of Active and Reactive Power Sharing Strategies in Hierarchical Controlled Microgrids. IEEE Trans. Power Electron. 32, 2427–2451 (2017) – 10.1109/tpel.2016.2569597
- Sanchez, S., Ortega, R., Grino, R., Bergna, G. & Molinas, M. Conditions for Existence of Equilibria of Systems With Constant Power Loads. IEEE Trans. Circuits Syst. I 61, 2204–2211 (2014) – 10.1109/tcsi.2013.2295953
- Yang, B., Wu, Q. H., Jiang, L. & Smith, J. S. Adaptive passivity-based control of a TCSC for the power system damping improvement of a PMSG based offshore wind farm. 2013 International Conference on Renewable Energy Research and Applications (ICRERA) 717–721 (2013) doi:10.1109/icrera.2013.6749847 – 10.1109/icrera.2013.6749847
- Ortega, R. & Romero, J. G. Robust integral control of port-Hamiltonian systems: The case of non-passive outputs with unmatched disturbances. IEEE Conference on Decision and Control and European Control Conference 3222–3227 (2011) doi:10.1109/cdc.2011.6160543 – 10.1109/cdc.2011.6160543
- El Moubarek Bouzid, A., Sicard, P., Yamane, A. & Paquin, J.-N. Simulation of droop control strategy for parallel inverters in autonomous AC microgrids. 2016 8th International Conference on Modelling, Identification and Control (ICMIC) 701–706 (2016) doi:10.1109/icmic.2016.7804202 – 10.1109/icmic.2016.7804202
- zurfi, Investigation of the Line Frequency for Demand-Side Primary Frequency Control Using Behind-the-Meter Home Batteries. International Journal of Renewable Energy Research (IJRER) (2018)
- Miveh, M. R., Rahmat, M. F., Ghadimi, A. A. & Mustafa, M. W. Control techniques for three-phase four-leg voltage source inverters in autonomous microgrids: A review. Renewable and Sustainable Energy Reviews 54, 1592–1610 (2016) – 10.1016/j.rser.2015.10.079
- das, Feasibility analysis of standalone PV/wind/battery hybrid energy system for rural Bangladesh. International Journal of Renewable Energy Research (IJRER) (2016)
- Zhong, Q.-C. & Zeng, Y. Universal Droop Control of Inverters With Different Types of Output Impedance. IEEE Access 4, 702–712 (2016) – 10.1109/access.2016.2526616
- viswanathan, A Review: Control Strategies for Power Quality Improvement in Microgrid. International Journal of Renewable Energy Research (IJRER) (2018)
- Solanki, A., Nasiri, A., Bhavaraju, V., Abdullah, T. & Yu, D. A new control method for microgrid power management. 2013 International Conference on Renewable Energy Research and Applications (ICRERA) 1212–1216 (2013) doi:10.1109/icrera.2013.6749936 – 10.1109/icrera.2013.6749936
- Yallamilli, R. S. & Mishra, M. K. Power management of grid connected hybrid microgrid with dual voltage source inverter. 2016 IEEE International Conference on Renewable Energy Research and Applications (ICRERA) 407–412 (2016) doi:10.1109/icrera.2016.7884370 – 10.1109/icrera.2016.7884370
- allahvirdizadeh, Study of Energy Control Strategies for a Standalone PV/FC/UC Microgrid in a Remote. International Journal of Renewable Energy Research (IJRER) (2017)
- Sreekumar, P. & Khadkikar, V. Adaptive Power Management Strategy for Effective Volt–Ampere Utilization of a Photovoltaic Generation Unit in Standalone Microgrids. IEEE Trans. on Ind. Applicat. 54, 1784–1792 (2018) – 10.1109/tia.2017.2781643
- tan, A droop control based load sharing approach for management of renewable and nonrenewable energy resources in a remote power system. 2013 Australasian Universities Power Engineering Conference (AUPEC) (2013)
- Schiffer, J., Ortega, R., Astolfi, A., Raisch, J. & Sezi, T. Conditions for stability of droop-controlled inverter-based microgrids. Automatica 50, 2457–2469 (2014) – 10.1016/j.automatica.2014.08.009
- Ortega, R., van der Schaft, A., Maschke, B. & Escobar, G. Interconnection and damping assignment passivity-based control of port-controlled Hamiltonian systems. Automatica 38, 585–596 (2002) – 10.1016/s0005-1098(01)00278-3