Analysis of Three-Phase Shunt Active Filter under Wide Range of Load Conditions

RangaRao Chegudi, Balamurugan Ramadoss, RamaKoteswara Rao Alla

Abstract


In this work, three phase shunt active power filter (SAPF) under wide range of loading conditions by using different Pulse width Modulation techniques has been done. Power Quality (PQ) is an essential concern in the current scenario due to the regular use of power electronic converters and non-linear loads. PQ issues have a significant negative financial influence on consumers and utilities. The main aim of the work is minimization of Total Harmonics Distortion (THD) in medium and higher power applications with respect to the wide range of loading conditions. Performance analysis of a three-phase shunt active filter under a wide range of load conditions has been considered in this paper. For the designed controller analysis, the loads R, RL, RC, and RLE are taken into account along with various pulse width modulation (PWM) control approaches and the proportional-integral (PI) controller. Additionally, a comparison is made between traditional PWM with PI, space vector pulse width modulation (SVPWM), and selective harmonic elimination (SHE) PWM-PI control. System performance has been judged using Total Harmonic Distortion. The simulation results clearly show that the THD generated by the offered PWM schemes and PI controllers meets with the recommended standard set by IEEE 519. MATLAB/Simulink has been used to simulate and test the system. Finally, the performance of the proposed system is compared to the other research findings to claim the effectiveness of the system.

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References


Mahaboob, S., Ajithan, S. K., & Jayaraman, S., “Optimal design of shunt active power filter for power quality enhancement using predator-prey based firefly optimization”. Swarm and Evolutionary Computation, Vol. 44, no.1, pp.522–533, 2019.

Basha, S. G., Mani, V., & Mopidevi, S., “Single-phase thirteen-level dual-boost inverter based shunt active power filter control using resonant and fuzzy logic controllers. CSEE Journal of Power and Energy Systems, Vol.8, no.3, 2022.

Sarayu Vunnam, M. VanithaSri, A. RamaKoteswaraRao, “Performance analysis of mono crystalline, poly crystalline and thin film material based 6 × 6 T-C-T PV array under different partial shading situations”, Optik, Vol. 248, p.168055, 2021.

G. S. Rao, B. S. Goud and C. R. Reddy, "Power Quality Improvement using ASO Technique”, 9th International Conference on Smart Grid (icSmartGrid), 2021, pp. 238-242.

A. M. Colak and K. Kayisli, “Reducing Voltage and Frequency Fluctuations in Power Systems using Smart Power Electronics Technologies: A Review”, 9th International Conference on Smart Grid (icSmartGrid), 2021, pp. 197-200.

K. Rajani and T. Ramesh., “Maximum power enhancement under partial shadings using a modified Sudoku reconfiguration”, CSEE Journal of Power and Energy Systems, Vol.7, no.6, pp.1187-1201, 2021.

Ranga Rao Ch, Balamurugan R., RamaKoteswaraRao Alla, “Simulation and Stability Analysis of Three-Phase Shunt Active Filter Based on Internal Model Controller (IMC)”, Journal of Engineering Science and Technology Review, vol. 14, no.6, pp.154-161, 2021.

Wang, Y., Yin, K., Liu, H., and Yuan, Y.,“A Novel Integrated Method for Harmonic Suppression and Reactive Power Compensation in Distribution Network”. Symmetry, Vol.14, no.7, pp.1347, 2022.

R. Kannan, B. Krishnan, K. Porkumaran, S. Prabakar, I. Elamvazuthi and K. Srinivasan, “Power Quality Improvement Using UPQC for Grid Interconnected Renewable Energy Sources”, 8th International Conference on Intelligent and Advanced Systems (ICIAS), 2021, pp. 1-6.

RamaKoteswara Rao A., Lekyasri N., Rajani K., “PID Control Design for Second Order Systems”, International Journal of Engineering and Manufacturing(IJEM), Vol.9, No.4, pp.45-56, July 2019.

A. Masuda and H. Goto, “Control Strategy for Power Smoothing Converter with Energy Storage for Maximum Power Controlled Wave Energy Converter”, 10th International Conference on Renewable Energy Research and Application (ICRERA), 2021, pp. 235-238.

Venkata Mahesh, P., Meyyappan,S, and RamaKoteswaraRao, A., “Multivariate Linear Regression MPPT Algorithm for Solar PV Systems with Boost Converter”, The ECTI Transactions on Electrical Engineering, Electronics, and Communications, Vol. 20, no.2, pp. 269-281, 2022.

Hassan Raji Mhel, Amina Mahmoud Shakir “Total Harmonic Distortion Reduction of 9-Level Packed E-Cell (PEC9) Inverter”, International Journal of Smart Grid - ijSmartGrid, Vol.6, no.1, pp.13-22, 2022.

T. Ramesh, K. Rajani and A. K. Panda. “A novel triple-tied-cross-linked PV array configuration with reduced number of cross-ties to extract maximum power under partial shading conditions”, CSEE Journal of Power and Energy Systems, 7(3), 567-581, 2021.

Habib Benbouhenni, “Utilization of an ANFIS-STSM Algorithm to Minimize Total Harmonic Distortion”, International Journal of Smart Grid - ijSmartGrid, Vol. 4, no.2, pp. 56-67, 2020.

Ravindranath Tagore, Y., Rajani, K. and Anuradha, K, “Dynamic analysis of solar powered two-stage dc-dc converter with MPPT and voltage regulation”, Int. J. Dynam. Control. pp. 1-15, 2022.

Dasari, M. S., and Mani, V., “Simulation and analysis of three-phase parallel inverter using multicarrier PWM control schemes”. SN Applied Sciences, Vol.2, no.5, pp.1-10, 2020.

Kundu, S., Burman, A. D., Giri, S. K., Mukherjee, S., and Banerjee, S.”Comparative study between different optimisation techniques for finding precise switching angle for SHE?PWM of three?phase seven?level cascaded H?bridge inverter”. IET Power Electronics, Vol.11, no.3, pp. 600-609, 2018.

Venkata Mahesh, P., Meyyappan, S., RamaKoteswara Rao A., “Maximum Power Point Tracking with Regression Machine Learning Algorithms for Solar PV Systems”, International Journal of Renewable Energy Research (IJRER), Vol. 12, no.3, pp. 1327-1338, September 2022.

Prajna Paramita Dash, Mehrdad Kazerani, “Harmonic Elimination in a Multilevel Current-Source Inverter-based grid-connected Photovoltaic System”, IECON 2012 - 38th Annual Conference on IEEE Industrial Electronics Society,Vol. 25, pp.1001-1006, 2012.

RamaKoteswaraRao A., Lather J.S., Pahuja G.L., “Comparison of PI controller performance for first order systems with time delay”, Journal of Engineering Science and Technology, vol.12, no.4, pp.1081-1091, 2017.

Paulo F. Ribeiro, “Common Misapplications of the IEEE 519 Harmonic Standard: Voltage or Current Limits”, Power and Energy Society General Meeting - Conversion and Delivery of Electrical Energy in the 21st Century, IEEE, 20-24 July 2008, pp.1–3.

Diego E. Soto-Sanchez and Tim C. Green, “Voltage Balance and Control in a Multi-Level Unified Power Flow Controller”, IEEE Transactions on power delivery, Vol. 16, no. 4, pp.732-738, 2001.

F. Z. Peng, “A generalized multilevel inverter topology with self voltage balancing,” IEEE Trans. Ind. Applicat., Vol. 37, pp. 611–618, 2021.

Venkatesan, M., Adhavan, B., Suresh, K., Balachander, K., and Prabakar, M. L. C., “Research on FPGA controlled three phase PV inverter using multi carrier PWM control schemes”. Microprocessors and Microsystems, Vol.76, Art.no.103089, 2020.

S. G. Basha, V. Mani and S. Mopidevi, "Single-phase Thirteen-level Dual-boost Inverter Based Shunt Active Power Filter Control Using Resonant and Fuzzy Logic Controllers", CSEE Journal of Power and Energy Systems, Vol. 8, no. 3, pp. 849-863, 2022.

B. N. Rao, Y. Suresh, A. K. Panda, B. S. Naik and V. Jammala, “Development of cascaded multilevel inverter based active power filter with reduced transformers”, CPSS Transactions on Power Electronics and Applications, vol. 5, no. 2, pp. 147-157, 2020.

G. Pandove and M. Singh, "Robust Repetitive Control Design for a Three-Phase Four Wire Shunt Active Power Filter”, IEEE Transactions on Industrial Informatics, vol. 15, no. 5, pp. 2810-2818, 2019.

Y. Li, Q. Zhou, S. Mu, T. Zhang, H. Li and J. Wang, "A Sliding Mode SVPWM Method for a HTS Shunt Active Power Filter", IEEE Transactions on Applied Superconductivity, vol. 31, no. 8, pp. 1-2, , Art no. 5000902, 2021.

W. Ding, L. Ming, C. Yin, P. Chiang Loh, B. Duan and C. Zhang, "An Integrated Common-Mode Fast-Balancing Mechanism for Three-Phase Three-Level Converter With LCL Filter”, IEEE Transactions on Power Electronics, Vol. 36, no. 11, pp. 12694-12709, 2021.




DOI (PDF): https://doi.org/10.20508/ijrer.v12i4.13393.g8615

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