Mahdavi, Sadegh and Amin Froutani-Fard, Amin (2017): Reactive Power Management of a DFIG Wind System in Microgrids Based on Economics of the System.
Preview |
PDF
MPRA_paper_76047.pdf Download (1MB) | Preview |
Abstract
Due to significant line resistances in microgrids, active power variations produced by wind turbine can lead to significant fluctuations in voltage magnitudes and as a result economic of the grid. This project proposes a voltage sensitivity analysis-based scheme to achieve voltage regulation at a target bus in such microgrids. The method is local and can be implemented in the absence of widespread communication system or remote measurement. The economic performance of the method is illustrated on the IEEE-13 bus distribution network. Dynamic simulations (in PSCAD/EMTDC) are presented to assess the voltage regulation characteristics.
Item Type: | MPRA Paper |
---|---|
Original Title: | Reactive Power Management of a DFIG Wind System in Microgrids Based on Economics of the System |
English Title: | Reactive Power Management of a DFIG Wind System in Microgrids Based on Economics of the System |
Language: | English |
Keywords: | Optimization, Economic, Microgrid |
Subjects: | L - Industrial Organization > L0 - General |
Item ID: | 76047 |
Depositing User: | Farnoosh Ashkaboosi |
Date Deposited: | 08 Jan 2017 09:08 |
Last Modified: | 27 Sep 2019 05:03 |
References: | [1] Moeini, Amirhossein, Hui Zhao, and Shuo Wang. "A Current Reference based Selective Harmonic Current Mitigation PWM Technique to Improve the Performance of Cascaded H-bridge Multilevel Active Rectifiers." IEEE Transactions on Industrial Electronics (2016). [2] Mehrtash, Mahdi, Masoud Jokar Kouhanjani, and Mohammad Mohammadi. "A new nonparametric density estimation for probabilistic security-constrained economic dispatch." Journal of Intelligent & Fuzzy Systems Preprint: 1-12. [3] Q. Li et al., "Networked and Distributed Control Method With Optimal Power Dispatch for Islanded Microgrids," in IEEE Transactions on Industrial Electronics, vol. 64, no. 1, pp. 493-504, Jan. 2017. [4] D. I. Brandao, T. Caldognetto, F. P. Marafão, M. G. Simões, J. A. Pomilio and P. Tenti, "Centralized Control of Distributed Single-Phase Inverters Arbitrarily Connected to Three-Phase Four-Wire Microgrids," in IEEE Transactions on Smart Grid, vol. 8, no. 1, pp. 437-446, Jan. 2017. [5] Moeini, Amirhossein, Hossein Iman-Eini, and Mohamadkazem Bakhshizadeh. "Selective harmonic mitigation-pulse-width modulation technique with variable DC-link voltages in single and three-phase cascaded H-bridge inverters." IET Power Electronics 7, no. 4 (2014): 924-932. [6] H. Mahmood, D. Michaelson and J. Jiang, "Accurate Reactive Power Sharing in an Islanded Microgrid Using Adaptive Virtual Impedances," in IEEE Transactions on Power Electronics, vol. 30, no. 3, pp. 1605-1617, March 2015. [7] Zakernejad, Mohammad Hossein, Mohammad Mohammadi, and Mahdi Mehrtash. "A New Approach for Probabilistic Evaluation of Transient Recovery Voltage Across Circuit Breakers in TCSC Compensated Transmission Lines." In Power System Conference (PSC), Tehran. 2014. [8] Mehrtash, Mahdi, Masoud Jokar Kouhanjani, Amir Pourjafar, and Seyedbehnam Beladi. "An Interior Point Optimization Method for Stochastic Security-constrained Unit Commitment in the Presence of Plug-in Electric Vehicles." Journal of Applied Sciences 16, no. 5 (2016): 189. [9] S. Seidi Khorramabadi and A. Bakhshai, "Critic-Based Self-Tuning PI Structure for Active and Reactive Power Control of VSCs in Microgrid Systems," in IEEE Transactions on Smart Grid, vol. 6, no. 1, pp. 92-103, Jan. 2015. [10] Dabbaghjamanesh, M., A. Moeini, M. Ashkaboosi, P. Khazaei, and K. Mirzapalangi. "High performance control of grid connected cascaded H-Bridge active rectifier based on type II-fuzzy logic controller with low frequency modulation technique." International Journal of Electrical and Computer Engineering (IJECE) 6, no. 2 (2016): 484-494. [11] H. Han, Y. Liu, Y. Sun, M. Su and J. M. Guerrero, "An Improved Droop Control Strategy for Reactive Power Sharing in Islanded Microgrid," in IEEE Transactions on Power Electronics, vol. 30, no. 6, pp. 3133-3141, June 2015. [12] J. He, Y. W. Li and F. Blaabjerg, "An Enhanced Islanding Microgrid Reactive Power, Imbalance Power, and Harmonic Power Sharing Scheme," in IEEE Transactions on Power Electronics, vol. 30, no. 6, pp. 3389-3401, June 2015. [13] Ashkaboosi, Maryam, Seyed Mehdi Nourani, Peyman Khazaei, Morteza Dabbaghjamanesh, and Amirhossein Moeini. "An optimization technique based on profit of investment and market clearing in wind power systems." American Journal of Electrical and Electronic Engineering 4, no. 3 (2016): 85-91. [14] Mehrtash, Mahdi, Mahdi Raoofat, Mohammad Mohammadi, Mohammad Hossein Zakernejad, and Hamidreza Zareipour. "Considering Multiple Uncertainties in Stochastic Security-Constrained Unit Commitment Using Point Estimation Method." [15] Y. Zhu, F. Zhuo, F. Wang, B. Liu, R. Gou and Y. Zhao, "A Virtual Impedance Optimization Method for Reactive Power Sharing in Networked Microgrid," in IEEE Transactions on Power Electronics, vol. 31, no. 4, pp. 2890-2904, April 2016. [16] M. M. A. Abdelaziz, "Effect of Detailed Reactive Power Limit Modeling on Islanded Microgrid Power Flow Analysis," in IEEE Transactions on Power Systems, vol. 31, no. 2, pp. 1665-1666, March 2016. [17] Khazaei, P., S. M. Modares, M. Dabbaghjamanesh, M. Almousa, and A. Moeini. "A high efficiency DC/DC boost converter for photovoltaic applications." International Journal of Soft Computing and Engineering (IJSCE) 6, no. 2 (2016): 2231-2307. [18] Mehrtash, Mahdi, Mahdi Raoofat, Mohammad Mohammadi, and Hamidreza Zareipour. "Fast stochastic security‐constrained unit commitment using point estimation method." International Transactions on Electrical Energy Systems 26, no. 3 (2016): 671-688. [19] Moeini, Amirhossein, Zhao Hui, and Shuo Wang. "High efficiency, hybrid Selective Harmonic Elimination phase-shift PWM technique for Cascaded H-Bridge inverters to improve dynamic response and operate in complete normal modulation indices." In 2016 IEEE Applied Power Electronics Conference and Exposition (APEC), pp. 2019-2026. IEEE, 2016. [20] Moeini, Amirhossein, and Shuo Wang. "Asymmetric selective harmonic elimination technique using partial derivative for cascaded modular active rectifiers tied to a power grid with voltage harmonics." In Electromagnetic Compatibility (APEMC), 2016 Asia-Pacific International Symposium on, vol. 1, pp. 982-987. IEEE, 2016. [21] Khazaei, Peyman, Morteza Dabbaghjamanesh, Ali Kalantarzadeh, and Hasan Mousavi. "Applying the modified TLBO algorithm to solve the unit commitment problem." In World Automation Congress (WAC), 2016, pp. 1-6. IEEE, 2016. [22] M. Kosari; S. H. Hosseinian, "Decentralized Reactive Power Sharing and Frequency Restoration in Islanded Microgrid," in IEEE Transactions on Power Systems , vol.PP, no.99, pp.1-1 [23] Ghaffari, Saeed, and Maryam Ashkaboosi. "Applying Hidden Markov Model Baby Cry Signal Recognition Based on Cybernetic Theory." IJEIR 5, no. 3 (2016): 243-247. |
URI: | https://mpra.ub.uni-muenchen.de/id/eprint/76047 |