1. bookVolumen 14 (2018): Heft 1 (July 2018)
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License
Format
Zeitschrift
eISSN
2255-9159
Erstveröffentlichung
31 Jan 2013
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2 Hefte pro Jahr
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Englisch
Uneingeschränkter Zugang

A novel hysteresis power point optimizer for distributed solar power generation

Online veröffentlicht: 28 Jul 2018
Volumen & Heft: Volumen 14 (2018) - Heft 1 (July 2018)
Seitenbereich: 12 - 22
Zeitschriftendaten
License
Format
Zeitschrift
eISSN
2255-9159
Erstveröffentlichung
31 Jan 2013
Erscheinungsweise
2 Hefte pro Jahr
Sprachen
Englisch

[1] “Renewables 2016 Global Status Report,” Renewable Energy Policy Network for the 21st Century, Paris, France, June 2016.Search in Google Scholar

[2] “The Fuel Cell Industry Review 2016,” E4tech, 2016.10.1016/S1464-2859(16)30268-1Search in Google Scholar

[3] M. Kasper, D. Bortis, and J.W. Kolar, “Classification and Comparative Evaluation of PV Panel-Integrated DC-DC Converter Concepts,” IEEE Transactions on Power Electronics, vol. 29, no. 5, pp. 2511-2526, May 2014. https://doi.org/10.1109/tpel.2013.227339910.1109/tpel.2013.2273399DOI öffnenSearch in Google Scholar

[4] J. Du, R. Xu, X. Chen, Y. Li and J. Wu, “A Novel Solar Panel Optimizer With Self-Compensation for Partial Shadow Condition,” in 2013 23th Annual IEEE Applied Power Electronics Conference and Exposition (APEC), Mar. 17-21, 2013, pp. 92-96. https://doi.org/10.1109/apec.2013.652019010.1109/apec.2013.6520190DOI öffnenSearch in Google Scholar

[5] P. S. Shenoy, K. A. Kim, and P. T. Krein, “Comparative Analysis of Differential Power Conversion Architectures and Controls for Solar Photovoltaics,” in 2012 IEEE 13th Workshop on Control and Modeling for Power Electronics (COMPEL), June 10-13, 2012, pp. 1-7. https://doi.org/10.1109/compel.2012.625178210.1109/compel.2012.6251782DOI öffnenSearch in Google Scholar

[6] S. M. MacAlpine, R. W. Erickson, and M. J. Brandemuehl, “Characterization of Power Optimizer Potential to Increase Energy Capture in Photovoltaic Systems Operating Under Nonuniform Conditions,” IEEE Transactions on Power Electronics, vol. 28, no. 6, pp. 2936-2945, 2013. https://doi.org/10.1109/tpel.2012.222647610.1109/tpel.2012.2226476DOI öffnenSearch in Google Scholar

[7] V. Salas, E. Olias, A. Barrado, and A. Lazaro, “Review of the Maximum Power Point Tracking Algorithms for Stand-Alone Photovoltaic Systems,” Solar Energy Materials and Solar Cells, vol. 90, no. 11, pp. 1555-1578, July 2006. https://doi.org/10.1016/j.solmat.2005.10.02310.1016/j.solmat.2005.10.023DOI öffnenSearch in Google Scholar

[8] O. Veligorskyi, R. Kosenko, and S. Stepenko, “High-Efficiency Solar Tracker Development and Effectiveness Estimation,” in 2014 IEEE International Conference on Intelligent Energy and Power Systems (IEPS), pp. 153-158, Jun. 2014. https://doi.org/10.1109/ieps.2014.687416910.1109/IEPS.2014.6874169Search in Google Scholar

[9] A. McEvoy, T. Markvart, and L. Castañer, eds., Practical Handbook of Photovoltaics, 2nd ed. Academic Press, 2012.Search in Google Scholar

[10] G. R. Walker and P. C. Sernia, “Cascaded DC-DC Converter Connection of Photovoltaic Modules,” IEEE Trans. Power Electron., vol. 19, no. 4, pp. 1130-1139, July 2004. https://doi.org/10.1109/tpel.2004.83009010.1109/TPEL.2004.830090Search in Google Scholar

[11] Z. Liang, R. Guo, J. Li, and A. Q. Huang, “A High-Efficiency PV Module-Integrated DC/DC Converter for PV Energy Harvest in FREEDM Systems,” IEEE Transactions on Power Electronics, vol. 26, no. 3, pp. 897-909, Mar. 2011. https://doi.org/10.1109/tpel.2011.210758110.1109/tpel.2011.2107581DOI öffnenSearch in Google Scholar

[12] A. Sanz, I. Vidaurrazaga, A. Pereda, R. Alonso, E. Roman, and V. Martinez, “Centralized vs Distributed (Power Optimizer) PV System Architecture Field Test Results Under Mismatched Operating Conditions,” in 2011 37th IEEE Photovoltaic Specialists Conference (PVSC), Jun. 19-24, 2011, pp. 2435-2440. https://doi.org/10.1109/pvsc.2011.618644010.1109/pvsc.2011.6186440DOI öffnenSearch in Google Scholar

[13] P. Tsao, S. Sarhan, and I. Jorio, “Distributed Max Power Point Tracking for Photovoltaic Arrays,” in 2009 34th IEEE Photovoltaic Specialists Conference (PVSC), Jun. 2009, pp. 2293-2298. https://doi.org/10.1109/pvsc.2009.541135110.1109/pvsc.2009.5411351DOI öffnenSearch in Google Scholar

[14] T. Zhu, F. Wang, S. Shi, L. Sun, F. Zhuo, and Y. Yang, “Optimization of Time-Sharing Output Maximum Current Tracking (MCT) Strategy in Subpanel Level Distributed Maximum Power Point Tracking (DMPPT) Application,” in 2016 IEEE 8th International Power Electronics and Motion Control Conference, May 22-26, 2016, pp. 3435-3440. https://doi.org/10.1109/ipemc.2016.751284610.1109/IPEMC.2016.7512846Search in Google Scholar

[15] S. Strache, J. H. Mueller, R. Wunderlich, and S. Heinen, “Photovoltaic Output Power Improvement Applying DC-DC Converters on Submodule Level,” in 2012 International Conference on Smart Grid Technology, Economics and Policies (SG-TEP), Dec. 3-4, 2012, pp. 1-4. https://doi.org/10.1109/sg-tep.2012.664237910.1109/sg-tep.2012.6642379DOI öffnenSearch in Google Scholar

[16] P. Tsao, “Simulation of PV Systems With Power Optimizers and Distributed Power Electronics,” in 2010 35th IEEE Photovoltaic Specialists Conference (PVSC), Jun. 20-25, 2010, pp. 389-393. https://doi.org/10.1109/pvsc.2010.561681410.1109/pvsc.2010.5616814DOI öffnenSearch in Google Scholar

[17] C. Deline, “Partially Shaded Operation of Multi-String Photovoltaic Systems,” 2010 35th IEEE Photovoltaic Specialists Conference (PVSC), Jun. 20-25, 2010, pp. 394-399. https://doi.org/10.1109/pvsc.2010.561682110.1109/pvsc.2010.5616821DOI öffnenSearch in Google Scholar

[18] S. Y. Prasad, B. B. Chhetri, B. Adhikary, and D. Bista, “Microcontroller Based Intelligent DC/DC Converter to Track Maximum Power Point for Solar Photovoltaic Module,” in 2010 IEEE Conference on Innovative Technologies for an Efficient and Reliable Electricity Supply (CITRES), Sep. 27-29, 2010, pp. 94-101. https://doi.org/10.1109/citres.2010.561985910.1109/citres.2010.5619859DOI öffnenSearch in Google Scholar

[19] H. H. Chung, K. K. Tse, S. R. Hui, C. M. Mok, and M. T. Ho, “A Novel Maximum Power Point Tracking Technique for Solar Panels Using a SEPIC or Cuk Converter,” IEEE Transactions on Power Electronics, vol. 18, no. 3, pp. 717-724, May 2003. https://doi.org/10.1109/tpel.2003.81084110.1109/tpel.2003.810841DOI öffnenSearch in Google Scholar

[20] S. M. Chen, K. R. Hu, T. J. Liang, Y. H. Hsieh, and L. S. Yang, “Implementation of High Step-Up Solar Power Optimizer for DC Micro Grid Application,” in 2012 Twenty-Seventh Annual IEEE Applied Power Electronics Conference and Exposition (APEC), Feb. 5-9, 2012, pp. 28-32. https://doi.org/10.1109/apec.2012.616579410.1109/apec.2012.6165794DOI öffnenSearch in Google Scholar

[21] S.-M. Chen, T.-J. Liang, and K.-R. Hu, “Design, Analysis, and Implementation of Solar Power Optimizer for DC Distribution System,” IEEE Transactions on Power Electronics, vol. 28, no. 4, pp.1764-1772, Apr. 2013. https://doi.org/10.1109/tpel.2012.221327010.1109/tpel.2012.2213270DOI öffnenSearch in Google Scholar

[22] M. Veerachary, “Fourth-Order Buck Converter for Maximum Power Point Tracking Applications,” IEEE Transactions on Aerospace and Electronic Systems, vol. 47, no. 2, pp. 896-911, Apr. 2011. https://doi.org/10.1109/taes.2011.575123310.1109/taes.2011.5751233DOI öffnenSearch in Google Scholar

[23] M. A. G. De Brito, L. Galotto, L. P. Sampaio, G. D. A. e Melo, and C. A. Canesin, “Evaluation of the Main MPPT Techniques for Photovoltaic Applications,” IEEE Transactions on Industrial Electronics, vol. 60, no. 3, pp. 1156-1167, Mar. 2013. https://doi.org/10.1109/tie.2012.219803610.1109/tie.2012.2198036DOI öffnenSearch in Google Scholar

[24] T. Esram and P. L. Chapman, “Comparison of Photovoltaic Array Maximum Power Point Tracking Techniques,” IEEE Transactions on Energy Conversion, vol. 22, no. 2, pp. 439-449, Jun. 2007. https://doi.org/10.1109/tec.2006.87423010.1109/tec.2006.874230DOI öffnenSearch in Google Scholar

[25] N. Femia, D. Granozio, G. Petrone, G. Spagnuolo, and M. Vitelli, “Predictive & Adaptive MPPT Perturb and Observe Method,” IEEE Transactions on Aerospace and Electronic Systems, vol. 43, no. 3, pp. 934-950, Jun. 2007. https://doi.org/10.1109/taes.2007.438358410.1109/taes.2007.4383584DOI öffnenSearch in Google Scholar

[26] Hussain, A. Kumar, and L. Behera, “Sliding Mode Control of a Buck Converter for Maximum Power Point Tracking of a Solar Panel,” in 2013 IEEE International Conference on Control Applications (CCA), Aug. 28- 30, 2013, pp. 661-666. https://doi.org/10.1109/cca.2013.666282510.1109/cca.2013.6662825DOI öffnenSearch in Google Scholar

[27] E. Koutroulis, K. Kalaitzakis, and N. C. Voulgaris, “Development of a Microcontroller-Based, Photovoltaic Maximum Power Point Tracking Control System,” IEEE Transactions on Power Electronics, vol. 16, no. 1, pp. 46-54, 2001. https://doi.org/10.1109/63.90398810.1109/63.903988DOI öffnenSearch in Google Scholar

[28] N. Femia, G. Petrone, G. Spagnuolo, and M. Vitelli, “Optimization of Perturb and Observe Maximum Power Point Tracking Method,” IEEE Transactions on Power Electronics, vol. 20, no. 4, pp. 963-973, Jul. 2005. https://doi.org/10.1109/tpel.2005.85097510.1109/tpel.2005.850975DOI öffnenSearch in Google Scholar

[29] N. A. Rahim and J. Selvaraj, “Hysteresis Current Control and Sensorless MPPT for Grid-Connected Photovoltaic Systems,” in 2007 IEEE International Symposium on Industrial Electronics, Jun. 4-7, 2007, pp. 572-577. https://doi.org/10.1109/isie.2007.437465910.1109/isie.2007.4374659DOI öffnenSearch in Google Scholar

[30] N. Patcharaprakiti and S. Premrudeepreechacharn, “Maximum Power Point Tracking Using Adaptive Fuzzy Logic Control for Grid-Connected Photovoltaic System,” in Proc. 2002 IEEE Power Engineering Society Winter Meeting, Jan. 27-31, 2002, vol. 1, pp. 372-377. https://doi.org/10.1109/pesw.2002.98502210.1109/pesw.2002.985022DOI öffnenSearch in Google Scholar

[31] J. Li and H. Wang, “Maximum Power Point Tracking of Photovoltaic Generation Based on the Fuzzy Control Method,” in 2009 Int. Conference on Sustainable Power Generation and Supply, Apr. 1-6, 2009, pp. 1-6. https://doi.org/10.1109/supergen.2009.534816810.1109/supergen.2009.5348168DOI öffnenSearch in Google Scholar

[32] M. Veerachary, T. Senjyu, and K. Uezato, “Neural-Network-Based Maximum-Power-Point Tracking of Coupled-Inductor Interleaved- Boost-Converter-Supplied PV System Using Fuzzy Controller,” IEEE Transactions on Industrial Electronics, vol. 50, no. 4, pp. 749-758, Aug. 2003. https://doi.org/10.1109/tie.2003.81476210.1109/tie.2003.814762DOI öffnenSearch in Google Scholar

[33] R. M. Essefi, M. Souissi, and H. H. Abdallah, “Maximum Power Point Tracking Control Using Neural Networks for Stand-Alone Photovoltaic Systems,” International Journal of Modern Nonlinear Theory and Application, vol. 3, no. 3, pp. 53-65, Jul. 2014. https://doi.org/10.4236/ijmnta.2014.3300810.4236/ijmnta.2014.33008DOI öffnenSearch in Google Scholar

[34] P. J. Wolfs and L. Tang, “A Single Cell Maximum Power Point Tracking Converter Without a Current Sensor for High Performance Vehicle Solar Arrays,” in IEEE 36th Power Electronics Specialists Conference, Jun. 16, 2005, pp. 165-171. https://doi.org/10.1109/pesc.2005.158161910.1109/pesc.2005.1581619DOI öffnenSearch in Google Scholar

[35] O. López-Lapeña, M. T. Penella, and M. Gasulla, “A New MPPT Method for Low-Power Solar Energy Harvesting,” IEEE Transactions on Industrial Electronics, vol. 57, no. 9, pp. 3129-3138, Sep. 2010. https://doi.org/10.1109/tie.2009.2037653.10.1109/tie.2009.2037653DOI öffnenSearch in Google Scholar

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