Optimal Power Consumption in Micro Grid Based on PV Array
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Microgrids provide the ability to take energy from the grid as well as feed power directly to the grid through low voltage networks, thereby allowing the customer to become an active participant in the grid. They should also be able to work in emergency state and be disconnected from the grid, called islanded mode. Prediction and forecasting of renewable energy production plays a key role in microgrid management and control. Prediction algorithms are implemented part of the Energy Information Algorithm of microgrids. In smart microgrid is coupled with power system to deliver a smart system that can provide energy in efficient manner. Energy information system plays, therefore, a key role in managing the resources within the microgrid and can be thought as a layer on the top of the power layer.
C. Cho, J. H. Jeon, J. Y. Kim, S. Kwon, K. Park, and S. Kim, “Active synchronizing control of a microgrid,”IEEE Trans. Power Electron., vol. 26, no. 12, pp. 3707–3719, 2011.
C. S. Choi, J. I. Lee, and I. W. Lee, “Complex home energy management system architecture and implementation for green home with built-in photovoltaic and motorized blinders,” in Proc. IEEE 2012 Int. Conf. ICT Convergence (ICTC), Oct., pp. 295–296.
H. Beltran, I. Etxeberria-Otadui, E. Belenguer, and P. Rodriguez, “Power management strategies and energy storage needs to increase the operability of photovoltaic plants,” J. Renewable Sustain. Energy, vol. 4, p. 063101, 2012.
H. Gaztanaga, J. Landaluze, I. Etxeberria-Otadui, A. Padros, I. Berazaluce, and D. Cuesta, “Enhanced experimental PV plant grid-integration with a MW lithium-ion energy storage system,” in Proc. IEEE Energy Conversion Congr. and Expo., 2013, pp. 1324–1329.
Gevorgianand S. Booth, “Review of PREPA technical requirements for interconnecting wind and solar generation,” Tech. Rep. NREL/ TP-5D00-57089, Nov. 2013, Contract No. DE-AC36-08GO28308.
Y. Riffonneau, S. Bacha, F. Barruel, and S. Ploix, “Optimal power flow management for grid connected PV systems with batteries,” IEEE Trans. Sustainable Energy, vol. 2, no.3, pp. 309–320, 2011.
J. M. Guerrero, P. C. Loh, T. l. Lee, and M. Chandorkar, “Advanced control architectures for intelligent microgrids—Part II: Power quality, energy storage, and AC/DC microgrids,” IEEE Trans. Ind. Electron., vol. 60, no. 4, pp. 1263– 1270, Apr. 2013.
F. R. Yu, P. Zhang, W. Xiao, and P. Choudhury, “Communication systems for grid integration of renewable energy resources,” IEEE Network, vol. 25, no. 5, pp. 22–29,Sept.–Oct. 2011.
E. Romero-Cadaval, G. Spagnuolo, L. Garcia Franquelo, C. A. Ramos-Paja, T. Suntio, and W. M. Xiao, “Grid-connected photovoltaic generation plants: Components and operation,” IEEE Ind. Electron. Mag., vol. 7, no. 3, pp. 6–20, Sept. 2013.
Y. Wang, P. Zhang, W. Li, W. Xiao, and A. Abdollahi, “Online overvoltage prevention control of photovoltaic generators in microgrids,” IEEE Trans. Smart Grid, vol. 3, no. 4, pp. 2071–2078, Dec. 2012.
F. Chanand H. Calleja, “Reliability estimation of three single-phase topologies in grid-connected PV systems,” IEEE Trans. Ind. Electron., vol. 58, no. 7, pp. 2683–2689, July 2011.
Z. Moradi-Shahrbabak, A. Tabesh, and G. R. Yousefi, “Economical design of utility-scale photovoltaic power plants with optimum availability,” IEEE Trans. Ind. Electron., vol. 61, no. 7, pp. 3399–3406, July 2014.
P. E. Kakosimos, A. G. Kladas, and S. N. Manias, “Fast photovoltaic-system voltage- or current oriented MPPT employing a predictive digital current-controlled converter,” IEEE Trans. Ind. Electron., vol. 60, no. 12, pp. 5673–5685, Dec. 2013.
C. Benoit etal., “Deterministic optimal power flow for Smart Grid short-term predictive energy management,” in Proc. 2013 IEEE Grenoble PowerTech, pp. 1–7.
Z. Moradi-Shahrbabak, A. Tabesh, and G. R. Yousefi, “Economical design of utility-scale photovoltaic power plants with optimum availability,” IEEE Trans. Ind. Electron., vol. 61, no. 7, pp. 3399–3406, July 2014.
R. Cossent, L. Olmos, T. Gomez, C. Mateo, and P. Frias, “Distribution network costs under different penetration levels of distributed generation,” Eur. Trans. Electr. Power, vol. 21, no. 6, pp. 1869–1888, Sept. 2011.
Lasseter, Robert H., Joseph H. Eto, B. Schenkman, J. Stevens, H. Vollkommer, D. Klapp, E. Linton, Hector Hurtado, and J. Roy. "CERTS microgrid laboratory test bed." IEEE Transactions on Power Delivery 26, no. 1 (2011): 325-332.
R. Smithand S. Killa, “Bahrain World Trade Center (BWTC): The first large-scale integration of wind turbines in a building,” Struct. Des. Tall Special Build., vol. 16, no. 4, pp. 429–439, 2007.
D. M. Hanand J. H. Lim, “Design and implementation of smart home energy management systems based on ZigBee,”IEEE Trans. Consumer Electron., vol. 56, no. 3, pp. 1417–1425, 2010.