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Implementation of a cascaded fuzzy sliding mode control of hybrid power filter

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Warianty tytułu
PL
Implementacja kaskadowego rozmytego sterowania ślizgowego hybrydowego filtra mocy
Języki publikacji
EN
Abstrakty
EN
This paper provides an experimental analysis of a non-linear load-based disturbed system. The shunt hybrid power filter is proposed to avoid propagating the non-linear load-based harmonic current and giving compensation for reactive power. shunt hybrid power filter is a combination of a small-rating active power filter and a passive 5th, 7th harmonic tuned LC filter. In order to control a power shunt hybrid filter to minimize the total harmonic distortion, we use active and reactive instant power theory. In this article, we use the controller PI control technique in the first section and the second part, we use the flow logic and mode control sliding through the device, and we compared a theme. The output of shunt hybrid filter in reducing harmonic distortions and compensating for reactive power is defined in the experimental results. Through this research paper, we conclude that this type of hybrid filter had a significant role in reducing the THD ratio from 29 to 3.7.
PL
W artykule przedstawiono eksperymentalną analizę nieliniowego układu zaburzonego opartego na obciążeniu. Zaproponowano bocznikowy hybrydowy filtr mocy, aby uniknąć propagacji nieliniowego prądu harmonicznego opartego na obciążeniu i zapewnić kompensację mocy biernej. Hybrydowy filtr mocy bocznikowej jest kombinacją aktywnego filtra mocy o niskiej wartości znamionowej i pasywnego filtra LC dostrojonego do piątej i siódmej harmonicznej. Aby kontrolować hybrydowy filtr bocznikowy mocy w celu zminimalizowania całkowitego zniekształcenia harmonicznych, stosujemy teorię mocy czynnej i biernej chwilowej mocy. W tym artykule używamy techniki sterowania kontrolerem PI w pierwszej sekcji, a w drugiej części używamy logiki przepływu i sterowania trybem przesuwania się przez urządzenie i porównaliśmy motyw. Wydajność bocznikowego filtru hybrydowego w redukcji zniekształceń harmonicznych i kompensacji mocy biernej jest określona w wynikach eksperymentalnych. Na podstawie tej pracy badawczej dochodzimy do wniosku, że ten typ filtra hybrydowego odegrał znaczącą rolę w zmniejszeniu współczynnika THD z 29 do 3,7.
Rocznik
Strony
74--79
Opis fizyczny
Bibliogr.25 poz., rys., tab.
Twórcy
  • Smart Grids and Renewable Energies Laboratory (SRGE), I’m a Ph.D at Department of Electrical Engineering, Faculty of Science and Technology, at the University of Tahri Mohammed Bechar, BP 417 Route de Kenadsa, 08000 Bechar, Algeria
  • Smart Grids and Renewable Energies Laboratory (SRGE), I’m a Ph.D at Department of Electrical Engineering, Faculty of Science and Technology, at the University of Tahri Mohammed Bechar, BP 417 Route de Kenadsa, 08000 Bechar, Algeria
  • Smart Grids and Renewable Energies Laboratory (SRGE), I’m a Ph.D at Department of Electrical Engineering, Faculty of Science and Technology, at the University of Tahri Mohammed Bechar, BP 417 Route de Kenadsa, 08000 Bechar, Algeria
Bibliografia
  • [1] Y. Hoon, M. A. M. Radzi 2,3 , M. A. A. M. Zainuri , M. A. M. Zawawi; Shunt Active Power Filter, A Review on Phase Synchronization Control Techniques, Electronics 2019, 8, 79,doi:10.3390/electronics8070791
  • [2] S. Kumaresan a and H. HabeebullahSait; Design and control of shunt active power filter for power quality improvement of utility powered brushless DC motor drives, AUTOMATIKA 2020, VOL. 61, NO. 3, 507–521,doi.org/10.1080/00051144.2020.1789402
  • [3] S.Ouchen, A. Betka, J.P.Gaubert, S.Abdeddaim; Simulation and real time implementation of predictive direct power control forthree phase shunt active power filter using robust phase-lockedloop,SimulationModelling Practice and Theory 78 (2017) 1–17
  • [4] S. Ranjan Das, P.K.Ray, A.Mohanty; Improvement in Power Quality Using Hybrid Power Filters Based on RLS Algorithm A Combination of Shunt Hybrid Power Filterand Thyristor Controlled Reactorfor Power Quality,2017 International Conference on Alternative Energy in Developing Countries and Emerging Economies rence on Alternative Energy in Developing Countries and Emerging Economies,Energy Procedia 138 (2017) 723–728, doi.org/10.1016/j.egypro.2017.10.207.
  • [5] S.Musa, M. A. M. Radzi, H. Hizam, N. I.AbdoulWahab, Y.Hoom and M. A. A. M. Zainuri; Modified Synchronous Reference Frame Based Shunt Active Power Filter With Fuzzy Logic Control Pulse Width Modulation Inverter, Energies 2017, 10, 758; doi:10.3390/en10060758.
  • [6] M.Bharani Lakshmi, R.Thangasankaran, J.Gnanavadivel, S.T. Jaya Christa; Performance Evaluation of Fuzzy Controlled Single Phase PWM Rectifier,Proceedings of the 2nd International conference on Electronics, Communication and Aerospace Technology (ICECA 2018) IEEE Conference Record # 42487; IEEE Xplore ISBN:978-1-5386-0965-1.
  • [7] N.Khenfar , A. Semmah , M.Kadem; Adaline harmonics extraction algorithm applied to a shunt active power filter based on an adaptive fuzzy hysteresis current control and a fuzzy dc voltage controller, Przegląd elektrotechniczny, issn 0033-2097, r. 97 nr 5/2021
  • [8] X. Wang, H. Qing, P. Huang and C. Zhang; Modeling and Stability Analysis of Parallel Inverters in Island Microgrid,Electronics 2020, 9, 463; doi:10.3390/electronics9030463.
  • [9] Y. Wang , Y. Wang, S.Z.Chen, G. Zhang , Y.Zhang ; A Simplified Minimum DC-Link Voltage Control Strategy for Shunt Active Power Filters,Energies 2018, 11, 2407; doi:10.3390/en11092407
  • [10] W. Choi, H. Nam and S. Park; Single-Phase Multilevel PWM Inverter Based on H-bridge and its Harmonics Analysis," Journal of Power Electronics, Vol. 15, no. 5, pp. 1227-1234, 2015. DOI: 10.6113/JPE.2015.15.5.1227
  • [11] M. D. Nair, J. Biswas, G. Vivek and M. Barai; Optimum Hybrid SVPWM Technique for Three-level Inverter on the Basis of Minimum RMS Flux Ripple," Journal of Power Electronics, vol. 19, no. 2, pp. 413-430, 2019. DOI: 10.6113/JPE.2019.19.2.413
  • [12] Abdalmula,G; Simulation and implementation of two-level and three –level inverters by matlab and RT-LAB”, Thesis, March 2011
  • [13] A.A .Imam , R. Sreerama Kumar and Y. A. Al-TurkiH; Modeling and Simulation of a PI Controlled Shunt ActivePower Filter for Power Quality Enhancement Based on P-Q Theory, Electronics 2020, 9, 637; doi:10.3390/electronics9040637
  • [14] L. Zelloumaa, B. Rabhib S. Saadc, A. Benaissad, M. F. Benkhorise; Fuzzy logic controller of five levels active power filter, Energy Procedia 74 ( 2015 ) 1015–1025
  • [15] A. Cleary-Balderas, A. Medina-Rios, O. Cruz-Hernéndez; Hybrid Active Power Filter Based on the IRP Theoryfor Harmonic Current Mitigation
  • [16] C. R. Rajesh, S. P. Umayal; Shunt Active Filter for Multi-Level Inverters Using DDSRF with State Delay Controller, Journal of Power Electronics, Vol. 18, No. 3, pp. 863-870, May 2018
  • [17] A. A. Imam , R. Sreerama Kumar, Y. A. Al-Turki; Modeling and Simulation of a PI Controlled Shunt Active Power Filter for Power Quality Enhancement Based on P-Q Theory,Electronics 2020, 9, 637; doi:10.3390/electronics9040637
  • [18] A. M. Fahmy , A. K. Abdelslam, A. A. Lotfy , M. Hamad, A.Kotb; A Four Leg Shunt Active Power Filter Predictive Fuzzy Logic Controller for Low-Voltage Unbalanced-Load Distribution Networks,Journal of Power Electronics, Vol. 18, No. 2, pp. 573-587, March 2018
  • [19] V. N. Jayasankar , U. Vinatha; Advanced Control Approach for Shunt Active Power Filter Interfacing WindSolar Hybrid Renewable System to Distribution Grid, J. Electrical Systems 14-2 (2018): 88-102
  • [20] M. Babaie,K. Al-Haddad; Intelligent Harmonic Suppressor byAdaptive Fuzzy Controller for PEC9 Inverter under Unknown Non-linear Loads, IECON 2020 The 46th Annual Conference of the IEEE Industrial Electronics Society, 18 November 2020, DOI: 10.1109/IECON43393.2020.9254867
  • [21] C. R. Rajesh , S. P. Umayal; Shunt Active Filter for Multi-Level Inverters Using DDSRF with State Delay Controller, Journal of Power Electronics, Vol. 18, No. 3, pp. 863-870, May 2018
  • [22] N. Hamouda , H. Benalla, K. Hemsas, B. Babes, J. Petzoldt, T. Ellinger, C. Hamouda; Type-2 FuzzyLogic Predictive Control of a Grid Connected Wind Power Systems with Integrated Active Power Filter Capabilities, Journal of Power Electronics, Vol. 17, No. 6, pp. 1587-1599, November 2017
  • [23] M. A. Kouadria ,T. Allaoui, M. Denai; A hybrid fuzzy sliding mode control for a three-phase shunt active power filter,Springer-Verlag Berlin Heidelberg 2016, Energy Syst DOI 10.1007/s12667-016-0198-4
  • [24] A. Sahara, A. Kessal , L. Rahmani, J. P. Gaubert; ImprovedSliding Mode Controller for Shunt Active Power Filter, J ElectrEng Technol.2016; 11(3): 662-669 http://dx.doi.org/10.5370/JEET.2016.11.3.662
  • [25] M. Popescu , A. Bitoleanu , M. Linca, C. V. Suru; Improving Power Quality by a Four-Wire Shunt Active Power Filter: A Case Study, Energies 2021, 14, 1951. https://doi.org/10.3390/en14071951
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-cd9a0864-24f6-45a3-adf1-9d529a85d233
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