PERFORMANCE EVALUATION OF IRRADIANCE AND TEMPERATURE ON Z-SOURCE INTEGRATED SOLAR PV SYSTEM CONNECTED TO PUBLIC GRID

Authors

  • Danish Khan University college of Engineering Kota
  • Dhanesh Kumar Sambariya University college of Engineering, Kota(India)

Keywords:

PV array, Z-source converter, DC-DC converter, Utility grid

Abstract

Renewable energy sources (RES) such as solar, wind, tidal provide pollution-free and green energy. As per growing the population and dependency on the advance technology the energy consumption is also rapidly increased, conventional sources are depleting very fast and not enough to accomplish all the demands. Due to the high demand of energy power failure issue also increasing, to overcome all these problems researchers move to the Renewable (non-conventional) energy sources, that’s are used to provide the power for constant load and fulfill the demand continuously. PV is the most easiest and efficient source to generate power. In this paper, a study was done on describes the comparison of DC output voltage between boost converters with the Z- source converter.The working of grid-tied solar PV array with the effect of irradiance and temperature change by using Z-source paper components used in the system and analysis of the result of the grid station or load are performed.

References

Rauschenbach, H.S. Solar Cell Array Design Handbook. The Principles and Technology of Photovoltaic Energy Conversion. New York, N.Y.: Van Nostrand Reinhold,1980.

”A New Approach to Design of an optimized Grid Tied Smart Solar Photovoltaic (PV) System”. International Journal of Advancements in Research & Technology, Volume 1, Issue6, ISSN 2278-7763, November-2012.

Lamnadi, M., et al. "Comparative Study of IC, P&O and IC Method of Mppt Algorithm For Grid Connected PV Module." Journal of Theoretical & Applied Information Technology 89.1, 2016.

Mohanta, Prasanta Kumar. Modeling and Control of a Grid Connected Photovoltaic System. Diss. 2016.

Bharathkumar, M., and H. V. Byregowda. "Performance Evaluation of 5 MW Grid Connected Solar Photovoltaic Power Plant Established in Karnataka." International Journal of Innovative Research in Science, Engineering and Technology3.6, 2014.

Shen, M., & Peng, F. Z. “Operation Modes and Characteristics of the Z-Source Inverter with Small Inductance or Low Power Factor”. IEEE Transactions on Industrial Electronics, 55 (1), 89-96,(2008).

A. FLORESCU, O. STOCKLOSA, M. TEODORESCU, C. RADOI, D. A. STOICHESCU, and S. ROSU, “The advantages, limitations and disadvantages of Z-source inverter,” Proc. Int. Semicond. Conf. CAS, vol. 2, no. 1, pp. 483–486, 2010.

Ma, W. Ran and T. Q. Zheng, "Modeling and control of threephase grid-connected photovoltaic inverter," Control and Automation (ICCA), 2010 8th IEEE International Conference on, Xiamen, 2010, pp. 2240-2245.

Rauschenbach, H.S. Solar Cell Array Design Handbook. The Principles and Technology of Photovoltaic Energy Conversion. New York, N.Y.: Van Nostrand Reinhold, 1980.

A New Approach to Design of an optimized Grid Tied Smart Solar Photovoltaic (PV) System”. International Journal of Advancements in Research & Technology, Volume 1, Issue6, ISSN 2278-7763, November-2012.

Chedid, R.; Tajeddine, R.; Chaaban, F.; Ghajar, R., "Modeling and simulation of PV arrays under varying conditions,"inMediterraneanElectrotechnical Conference (MELECON), 2014 17th IEEE , vol., no., pp.536-542

M. G. Villalva, J. R. Gazoli and E. R. Filho, "Comprehensive Approach to Modeling and Simulation of Photovoltaic Arrays," in IEEE Transactions on Power Electronics, vol. 24, no. 5, pp. 1198- 1208.

Sonkar, S.P.; Lal, V.N.; Singh, R.K. Three-phase quasi-Z source inverters with regulated multiple AC outputs for microgrid applications and three-phase residential load. IET Power Electron. 2020, 13, 2222–2235.

Aleem, Z.; Shin, D.; Cha, H.; Lee, J.P.; Yoo, D.W.; Peng, F.Z. Parallel operation of inverter using trans-Z-source network. IET Power Electron. 2015, 8, 2176–2183.

M. Singh and S. Agrawal, "Performance Analysis of PV system with Quasi Z-Source Switched Inductor/Capacitor Voltage Gain Converter," 2021 Asian Conference on Innovation in Technology (ASIANCON), 2021, pp. 1-4, doi: 10.1109/ASIANCON51346.2021.9544963.

Published

2021-12-25

How to Cite

Khan, D., & Sambariya, D. K. (2021). PERFORMANCE EVALUATION OF IRRADIANCE AND TEMPERATURE ON Z-SOURCE INTEGRATED SOLAR PV SYSTEM CONNECTED TO PUBLIC GRID. JS International Journal of Multidisciplinary Research, 3(1). Retrieved from https://jconsortium.com/index.php/jsijmr/article/view/453