[1]
Z. L. Fang, L. H. Han Project Benefit Evaluation of Constructing 10kV Distributing and Low Voltage Network, Electric Drive Automation, Vol. 24, No. 5, pp.52-55, 2002, in Chinese.
Google Scholar
[2]
De Brabandere K, Bolsens B, Van den Keybus J, et al A voltage and frequency droop control method for parallel inverters, IEEE Transactions on Power Electronics, Vol. 22, no. 4, pp.1107-1115, (2007).
DOI: 10.1109/tpel.2007.900456
Google Scholar
[3]
Y. Zhu, H. P. Luo The Way of Reactive power Compensation for Low Voltage Network and the Capacity of Low Voltage Reactive power Compensators, Technology of Water Power, Vol. 4, pp.53-55, 2005, in Chinese.
Google Scholar
[4]
N. C. Zhou, Y. Chi, Q. G. Wang Control Strategies for Micro-grid Containing Non-linear and Unbalanced Loads, Automation of Electric Power Systems, Vol. 35, No. 9, pp.61-66, 2011, in Chinese.
Google Scholar
[5]
P. Zhang, Y. T. Liu A Simplified Dynamic Programming Approach to Voltage Control in Distribution Systems, Proceedings of the EPSA, Vol. 11, No. 4, pp.51-53, 1999, in Chinese.
Google Scholar
[6]
Z. C. Hu, X. F. Wang Time-interval Based Control Strategy of Reactive Power Optimization in Distribution Networks" Journal of Xi, an Jiaotong University, Vol. 36, No. 4, pp.45-49, 2002, in Chinese.
Google Scholar
[7]
J. G. Ma, X. Xu, Q. L. Wan Discussion on Division o f Compensation Capacitor Banks, Electric Power Automation Equipment, Vol. 24, No. 6, pp.91-92, 2004, in Chinese.
Google Scholar
[8]
Y. W. Li, D.M. Vilathgamuwa, P. C. Loh A grid-interfacing Power Quality Compensator for Three-phase Three-wire Micro-grid Application, IEEE Transactions on Power Electronics, Vol. 21, No. 4, pp.1021-1031, (2006).
DOI: 10.1109/tpel.2006.876844
Google Scholar