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Original Articles

Power Quality Analysis for Ship-Photovoltaic Power System: A Case Study

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Pages 1375-1386 | Received 10 May 2017, Accepted 20 May 2018, Published online: 12 Feb 2019

References

  • S. Wen et al., “Allocation of ESS by interval optimization method considering impact of ship swinging on hybrid PV/diesel ship power system,” Appl. Energy, vol. 175, pp. 158–167, August 2016.
  • B. Singh, C. Jain, S. Goel, R. Gogia, and U. Subramaniam, “A sustainable solar photovoltaic energy system interfaced with grid-Tied Voltage source converter for power quality improvement,” Electr. Power Components Syst., vol. 45, no. 2, pp. 171–183, August 2017.
  • B. Boukezata, A. Chaoui, J. P. Gaubert, and M. Hachemi, “Power quality improvement by an active power filter in grid-connected photovoltaic systems with optimized direct power control strategy,” Electr. Power Components Syst., vol. 44, no. 18, pp. 2036–2047, October 2016.
  • G. Zubi, R. Dufo-López, G. Pasaoglu, and N. Pardo, “Techno-economic assessment of an off-grid PV system for developing regions to provide electricity for basic domestic needs: a 2020-2040 scenario,” Appl. Energy, vol. 176, pp. 309–319, August 2016.
  • R. E. Hebner et al., “Technical cross-fertilization between terrestrial microgrids and ship power systems,” J. Mod. Power Syst. Clean Energy, vol. 4, no. 2, pp. 161–179, April 2016.
  • H. Liu, Q. Zhang, X. Qi, Y. Han, and F. Lu, “Estimation of PV output power in moving and rocking hybrid energy marine ships,” Appl. Energy, vol. 204, pp. 362–372, October 2017.
  • F. Diab, H. Lan, and S. Ali, “Novel comparison study between the hybrid renewable energy systems on land and on ship,” Renew. Sustain. Energy Rev., vol. 63, pp. 452–463, September 2016.
  • J. Barros, and R. I. Diego, “A review of measurement and analysis of electric power quality on shipboard power system networks,” Renew. Sustain. Energy Rev., vol. 62, pp. 665–672, 2016.
  • P. Gnaciński, “Effect of power quality on windings temperature of marine induction motors. Part I: Machine model,” Energy Convers. Manag., vol. 50, no. 10, pp. 2463–2476, 2009.
  • P. Gnacinski, “Thermal loss of life and load-carrying capacity of marine induction motors,” Energy Convers. Manag., vol. 78, pp. 574–583, 2014.
  • K. Fetyan, and D. El_Gazzar, “Effect of motor vibration problem on the power quality of water pumping stations,” Water Sci., vol. 28, no. 1, pp. 31–41, October 2014.
  • P. Donolo, G. Bossio, C. De Angelo, G. Garcia, and M. Donolo, “Voltage unbalance and harmonic distortion effects on induction motor power, torque and vibrations,” Electr. Power Syst. Res., vol. 140, pp. 866–873, November 2016.
  • J. C. Hernández, F. Sanchez-Sutil, and P. G. Bueno, “Large photovoltaic systems providing frequency containment reserves,” Asia-Pacific Power Energy Eng. Conf., pp. 1589–1593, December 2016.
  • A. Mathur, B. Das, and V. Pant, “Fault analysis of unbalanced radial and meshed distribution system with inverter based distributed generation (IBDG),” Int. J. Electr. Power Energy Syst., vol. 85, pp. 164–177, February 2017.
  • S. Sakar, M. E. Balci, S. Abdel Aleem, and A. F. Zobaa, “Integration of large-scale PV plants in non-sinusoidal environments: Considerations on hosting capacity and harmonic distortion limits,” Renew. Sustain. Energy Rev., vol. 82, pp. 176–186, February 2018.
  • J. C. Hernández, M. J. Ortega, J. De La Cruz, and D. Vera, “Guidelines for the technical assessment of harmonic, flicker and unbalance emission limits for PV-distributed generation,” Electr. Power Syst. Res., vol. 81, no. 7, pp. 1247–1257, July 2011.
  • F. J. Ruiz-Rodriguez, J. C. Hernández, and F. Jurado, “Voltage unbalance assessment in secondary radial distribution networks with single-phase photovoltaic systems,” Int. J. Electr. Power Energy Syst., vol. 64, pp. 646–654, January 2015.
  • J. C. Hernández, M. J. Ortega, and A. Medina, “Statistical characterisation of harmonic current emission for large photovoltaic plants,” Int. Trans. Electr. Energ. Syst., vol. 24, no. 8, pp. 1134–1150, June 2014.
  • F. J. Ruiz-Rodriguez, J. C. Hernández, and F. Jurado, “Harmonic modelling of PV systems for probabilistic harmonic load flow studies,” Int. J. Circ. Theor. Appl., vol. 43, no. 11, pp. 1541–1565, September 2015.
  • A. D. Martin, R. S. Herrera, J. R. Vazquez, P. Crolla, and G. M. Burt, “Unbalance and harmonic distortion assessment in an experimental distribution network,” Electr. Power Syst. Res., vol. 127, pp. 271–279, October 2015.
  • J. Prieto Thomas, P. Salmerón Revuelta, A. Pérez Vallés, and S. Pérez Litrán, “Practical evaluation of unbalance and harmonic distortion in power conditioning,” Electr. Power Syst. Res., vol. 141, pp. 487–499, December 2016.
  • M. Fuentes, M. Vivar, J. M. Burgos, J. Aguilera, and J. A. Vacas, “Design of an accurate, low-cost autonomous data logger for PV system monitoring using ArduinoTM that complies with IEC standards,” Sol. Energy Mater. Sol. Cells, vol. 130, pp. 529–543, November 2014.
  • P. P. Biswas, P. N. Suganthan, and G. A. J. Amaratunga, “Minimizing harmonic distortion in power system with optimal design of hybrid active power filter using differential evolution,” Appl. Soft Comput. J., vol. 61, pp. 486–496, December 2017.
  • J. Mindykowski, and T. Tarasiuk, “Development of DSP-based instrumentation for power quality monitoring on ships,” Meas. J. Int. Meas. Confed., vol. 43, no. 8, pp. 1012–1020, October 2010.
  • J. Mindykowski, and T. Tarasiuk, “Problems of power quality in the wake of ship technology development,” Ocean Eng., vol. 107, pp. 108–117, October 2015.
  • Iec 60092-101. Electric Installations in Ships – Part 101: Definitions and General Requirements, International Electrotechnical Commission, Genève, Suisse, 2002.
  • V. Det Norske, Rules for classification and construction. Ship technology, seagoing ships, electrical installations of ships, Part4; 2012 [chapter8].
  • Lloyd's Register of Shipping. Rules and regulations for the classification of ships, Part6; 2014.
  • American Bureau of Shipping. Rules for building and classification, steel vessels, Part4; 2004 [chapter8].
  • China Classification Society. Rules for classification of sea-going Steel Ships 2015, 2015.

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