Total Harmonic Distortion Reduction Through Photovoltaic Generation and Unified Active Power Filter (UAPF)
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Abstract
In the present research work, a harmonic current compensation method called Unified Active Power Filter is proposed, which has as its source an array of solar panels together with a boost converter that is abbreviated UAPF-PV, which is designed to be able to work in low voltage distribution networks, in order to reduce the harmonic component of current. This method uses two types of active filters, one of them is the series filter which uses transformers, the principle is to compensate the harmonics that are present in the voltage. The next type is the parallel power filter, in this way it compensates for current harmonics. The analysis was carried out in an IEEE 13-bar system in which a non-linear load is integrated in the 7th bar of the mentioned system. In this case, the components of voltage, current and the total harmonic component present in bus 7 of the system and in the load were analyzed. The results obtained were the decrease in current and voltage harmonics in bus 7 of the system, where it went from having 13.5% to 6% in the THDi IEEE 1159 and resolution No. ARCERNNR -017/2020.
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References
[2] D. R. Joca, A. U. Barbosa, D. S. Oliveira, P. P. Praca, L. H. S. C. Barreto, and R. N. A. L. Silva, “Analysis of a modulation technique applied to FC inverter for THD reduction,” Conf. Proc. - IEEE Appl. Power Electron. Conf. Expo. - APEC, vol. 2015-May, no. May, pp. 2261–2268, 2015, doi: 10.1109/APEC.2015.7104664.
[3] S. Rezazade, M. Salehi, M. Changizian, and E. Afjei, “Analysis of PFC Improvement and THD Reduction Achieved by PFC-based Zeta Converter and PWM-Rectifier,” 34th Int. Power Syst. Conf. PSC 2019, pp. 441–446, 2019, doi: 10.1109/PSC49016.2019.9081524.
[4] L. P. S. Raharja, O. A. Q., Z. Arief, and N. A. Windarko, “Reduction of Total Harmonic Distortion (THD) on Multilevel Inverter with Modified PWM using Genetic Algorithm,” Emit. Int. J. Eng. Technol., vol. 5, no. 1, pp. 91–118, 2017, doi: 10.24003/emitter.v5i1.174.
[5] D. Committee, “IEEE Power and Energy Society General Meeting,” IEEE Power Energy Soc. Gen. Meet., vol. 2018-Augus, 2018.
[6] ARCERNNR, “Regulación-002-20.pdf.” p. 36, 2020, [Online]. Available: https://www.controlrecursosyenergia.gob.ec/wp-content/uploads/downloads/2021/01/Regulacion-002-20.pdf.
[7] M. -Barajas and B.- Sánchez, “Contaminación Armónica Producida Por Cargas No Lineales De Baja Potencia: Modelo Matemático Y Casos Prácticos Harmonic Pollution Produced By Low Power Nonlinear Loads: Mathematical Model and Practical Cases,” Ing. Investig. y Tecnol. Núm, vol. 2, pp. 189–198, 2010, [Online]. Available: http://scielo.unam.mx/pdf/iit/v11n2/v11n2a6.pdf.
[8] E. González, M. Salvador, M. Guerrero, J. Alejandro, C. Ramos, and L. Antonio, “Las cargas no Lineales, su Repercusión en las Instalaciones Eléctricas y sus Soluciones,” Concienc. Tecnológica, no. 32, p. 0, 2006.
[9] S. Devassy and B. Singh, “Control of a Solar Photovoltaic Integrated Universal Active Power Filter Based on a Discrete Adaptive Filter,” IEEE Trans. Ind. Informatics, vol. 14, no. 7, pp. 3003–3012, 2018, doi: 10.1109/TII.2017.2778346.
[10] S. Devassy and B. Singh, “Control of Renewable Energy Integrated Universal Active Filter for Modern Distribution Systems,” India Int. Conf. Power Electron. IICPE, vol. 2018-Decem, pp. 1–6, 2018, doi: 10.1109/IICPE.2018.8709525.
[11] R. Chilipi, N. Al Sayari, and J. Y. Alsawalhi, “Control of single-phase solar power generation system with universal active power filter capabilities using least mean mixed-norm (LMMN)-based adaptive filtering method,” IEEE Trans. Sustain. Energy, vol. 11, no. 2, pp. 879–893, 2020, doi: 10.1109/TSTE.2019.2911852.
[12] S. Devassy and B. Singh, “Implementation of Solar Photovoltaic System with Universal Active Filtering Capability,” IEEE Trans. Ind. Appl., vol. 55, no. 4, pp. 3926–3934, 2019, doi: 10.1109/TIA.2019.2906297.
[13] M. Golla, S. Sankar, and K. Chandrasekaran, “Renewable integrated UAPF fed microgrid system for power quality enhancement and effective power flow management,” Int. J. Electr. Power Energy Syst., vol. 133, no. May, p. 107301, 2021, doi: 10.1016/j.ijepes.2021.107301.
[14] S. Pinzón and W. Pavón, “Diseño de Sistemas de Control Basados en el Análisis del Dominio en Frecuencia,” Rev. Técnica “Energía,” vol. 15, no. 2, pp. 76–82, 2019, doi: 10.37116/revistaenergia.v15.n2.2019.380