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      Intelligent approach-based hybrid control algorithm for integration of solar photovoltaic system in smart grid environment

      research-article
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      IET Smart Grid
      The Institution of Engineering and Technology
      power factor correction, smart power grids, power generation control, photovoltaic power systems, reactive power, distributed power generation, voltage control, power supply quality, harmonic distortion, solar photovoltaic system, smart grid environment, distributed generator, coordinated control measures, proper synchronisation, single-stage solar PV system, utility grid, connected loads, harmonics elimination, reactive power compensation, load balancing, power factor correction, zero voltage regulation modes, power quality improvement, grid tied PV system, well-established algorithms, overshoot, total harmonic distortion, grid currents, developed system, intelligent approach-based hybrid control algorithm, low voltage grid, medium voltage grid, quasiNewton back-propagation neural network, THD, MATLAB, SIMULINK platform

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          Abstract

          Integration of solar PV as a distributed generator (DG) require efficient and coordinated control measures for the proper synchronization. In this paper, a hybrid control algorithm for single stage solar photovoltaic (PV) system integrated with low voltage (LV)/medium voltage (MV) grid is proposed. The hybrid algorithm utilizes I cos ϕ technique and quasi-Newton back-propagation (QNBP) neural network (NN). The main contributions of the present work are: i) support the utility grid by feeding power and connected loads, ii) provide harmonics elimination, reactive power compensation, load balancing, iii) also works in power factor correction (PFC) and zero voltage regulation modes, iv) provides power quality improvement. The proposed control of grid tied PV system provides very fast response during static and dynamic conditions. The obtained results are compared with other well-established algorithms available in the literature. The comparison of the proposed algorithm is done on the basis of various parameters such as DC voltage undershoot and overshoot, settling time and THD in grid currents. The developed system is demonstrated in MATLAB/SIMULINK platform. Using the proposed algorithms there is significant improvement of 1.1% in total harmonic distortion (THD) of source current. The results of proposed controllers are experimentally validated on a developed laboratory protype.

          Most cited references40

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          Classification and comparison of maximum power point tracking techniques for photovoltaic system: A review

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            Photovoltaic penetration issues and impacts in distribution network – A review

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              Hybrid Voltage and Current Control Approach for DG-Grid Interfacing Converters With $LCL$ filters

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                Author and article information

                Contributors
                Journal
                IET-STG
                IET Smart Grid
                IET Smart Grid
                The Institution of Engineering and Technology
                2515-2947
                22 May 2019
                16 July 2019
                September 2019
                : 2
                : 3
                : 445-454
                Affiliations
                Department of Electrical Engineering, Delhi Technological University , Delhi 110042, India
                Article
                IET-STG.2019.0055 STG.2019.0055.R2
                10.1049/iet-stg.2019.0055
                4da6e491-54fb-43e5-9e7a-0faaf31eb832

                This is an open access article published by the IET under the Creative Commons Attribution License ( http://creativecommons.org/licenses/by/3.0/)

                History
                : 10 February 2019
                : 19 May 2019
                : 21 May 2019
                Page count
                Pages: 0
                Categories
                Research Article

                Computer science,Engineering,Artificial intelligence,Electrical engineering,Mechanical engineering,Renewable energy
                proper synchronisation,MATLAB,photovoltaic power systems,low voltage grid,solar photovoltaic system,power factor correction,SIMULINK platform,intelligent approach-based hybrid control algorithm,smart grid environment,distributed generator,power generation control,developed system,coordinated control measures,grid currents,single-stage solar PV system,total harmonic distortion,utility grid,overshoot,connected loads,harmonics elimination,well-established algorithms,reactive power compensation,grid tied PV system,load balancing,zero voltage regulation modes,power quality improvement,THD,reactive power,distributed power generation,smart power grids,quasiNewton back-propagation neural network,voltage control,medium voltage grid,power supply quality,harmonic distortion

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