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A Measurement and Power Line Communication System Design for Renewable Smart Grids

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[1] Singh, G.K. (2008). Modelling and experimental analysis of a self-excited six-phase induction generator for stand-alone renewable energy generation. Renewable Energy, 33 (7), 1605-1621.10.1016/j.renene.2007.08.007Search in Google Scholar

[2] Ansari, M.F., Chatterji, S., Iqbal, A. (2010). Automatic maximum power point tracker for solar PV modules using dSPACE software. International Journal ofSustainable Energy, 29 (3), 151-163.10.1080/14786460903556147Search in Google Scholar

[3] Alvarado, U., Juanicorena, A., Adin, I., Sedano, B., Gutiérrez, I., de Nó, J. (2012). Energy harvesting technologies for low-power electronics. Transactionson Emerging Telecommunications Technologies, 23 (8), 728-741.10.1002/ett.2529Search in Google Scholar

[4] Liu, F., Duan, S., Liu, B., Kang, Y. (2008). A variable step size INC MPPT method for PV systems. IEEETransactions on Industrial Electronics, 55 (7), 2622-2628.Search in Google Scholar

[5] Kwon, J.M., Kwon, B.H., Nam, K.H. (2008). Threephase photovoltaic system with three-level boosting MPPT control. IEEE Transactions on PowerElectronics, 23 (5), 2319-2327.Search in Google Scholar

[6] Kabalci, E., Kabalci, Y. (2010). BPSK modem based power line communication system for observing photovoltaic panels. In 2nd International Conferenceon Nuclear and Renewable Energy Resources(NURER 2010), 4-7 July 2010. Ankara, Turkey, 284-289.Search in Google Scholar

[7] Kim, I.S., Kim, M.B., Youn, M.J. (2006). New maximum power point tracker using sliding-mode observer for estimation of solar array current in the grid-connected photovoltaic system. IEEETransactions on Industrial Electronics, 53 (4), 1027-1035.10.1109/TIE.2006.878331Search in Google Scholar

[8] Patel, M., Cole, G.R., Pryor, T.L., Wilmot, N.A. (2004). Development of a novel SCADA system for laboratory testing. ISA Transactions, 43 (3), 477-490.10.1016/S0019-0578(07)60162-1Search in Google Scholar

[9] Wang, L., Liu, K.H. (2007). Implementation of a webbased real-time monitoring and control system for a hybrid wind-PV-battery renewable energy system. In International Conference on Intelligent SystemsApplications to Power Systems (ISAP 2007), 5 November 2007. IEEE, 1-6.Search in Google Scholar

[10] Guozhen, H., Tao, C., Changsong, C., Shanxu, D. (2009). Solutions for SCADA system communication reliability in photovoltaic power plants. In 6thInternational Power Electronics and Motion ControlConference (IPEMC ’09), 17-20 May 2009. IEEE, 2482-2485.10.1109/IPEMC.2009.5157821Search in Google Scholar

[11] Macken, K.J.P., Vanthournout, K., Van den Keybus, J., Deconinck, G., Belmans, R.J.M. (2004). Distributed control of renewable generation units with integrated active filter. IEEE Transactions on Power Electronics, 19 (5), 1353-1360.10.1109/TPEL.2004.833450Search in Google Scholar

[12] Dharmawan, H.A., Ali Sam, A.M. (2012). A compact remote monitoring system for a three-phase 10-kVA energy-efficient switchable distribution transformer.IEEE Transactions on Instrumentation andMeasurement, 61 (3), 618-628.10.1109/TIM.2011.2170497Search in Google Scholar

[13] Gagliarducci, M., Lampasi, D.A., Podesta, L. (2007).GSM-based monitoring and control of photovoltaic power generation. Measurement, 40 (3), 314-321.10.1016/j.measurement.2006.05.018Search in Google Scholar

[14] Perumal, T., Ramli, A.R., Leong, C.Y. (2008). Design and implementation of SOAP-based residential management for smart home systems. IEEETransactions Consumer Electronics, 54 (2), 453-459.10.1109/TCE.2008.4560114Search in Google Scholar

[15] Vairamani, K., Venkatesh, K.A., Mathivanan, N. (2011). Design and development of ZigBee based instantaneous flat-plate collector efficiency measurement system. Measurement Science Review, 11 (2), 57-60.10.2478/v10048-011-0011-4Search in Google Scholar

[16] Sharp Electronics Corporation. (2008). Sharp NE-170U1 multipurpose module. http://files.sharpusa.com/Downloads/Solar/Products/sol_dow_NE170U1.pdfSearch in Google Scholar

[17] Colak, I., Bayindir, R., Kabalci, E. (2009). Modeling of a three phase SPWM multilevel VSI with low THD using Matlab/Simulink. In 13th European Conferenceon Power Electronics and Applications (EPE '09), 8-10 September 2009. IEEE, 1-10.Search in Google Scholar

[18] Colak, I., Kabalci, E., Bayindir, R., Sagiroglu, S. (2009). The design and analysis of a 5-level cascaded voltage source inverter with low THD. In International Conference on Power Engineering,Energy and Electrical Drives (PowerEng '09), 18-20March 2009. IEEE, 575-580.10.1109/POWERENG.2009.4915185Search in Google Scholar

[19] Glover, I., Grant, P. (2000). Digital Communications (2nd edition). Prentice Hall.Search in Google Scholar

[20] Couch, L.W. (1997). Digital and AnalogCommunication Systems (5th edition). Prentice Hall.Search in Google Scholar

eISSN:
1335-8871
Lingua:
Inglese
Frequenza di pubblicazione:
6 volte all'anno
Argomenti della rivista:
Ingegneria, Elettrotecnica, Ingegneria dell'automazione, metrologia e collaudo