Performance Analysis of an Optimized Asymmetric Multilevel Inverter on Grid Connected SPV System

The purpose of this research is to develop an efficient single-phase grid-connected PV system using a better performing asymmetrical multilevel inverter (AMI). Circuit component reduction, harmonic reduction, and grid integration are critical criteria for better inverter efficiency. The proposed inv...

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Published inEnergies (Basel) Vol. 15; no. 20; p. 7665
Main Authors Kumar, Devineni Gireesh, Ganesh, Aman, Sireesha, Nagineni Venkata, Kshatri, Sainadh Singh, Mishra, Sachin, Sharma, Naveen Kumar, Bajaj, Mohit, Kotb, Hossam, Milyani, Ahmad H., Azhari, Abdullah Ahmed
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LanguageEnglish
Published Basel MDPI AG 01.10.2022
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Abstract The purpose of this research is to develop an efficient single-phase grid-connected PV system using a better performing asymmetrical multilevel inverter (AMI). Circuit component reduction, harmonic reduction, and grid integration are critical criteria for better inverter efficiency. The proposed inverter’s optimized topology requires seven unidirectional switches, three symmetric dc sources, and three diodes to produce an asymmetric fifteen level output; whereas, the same configuration will generate 7, 11, and 15-level output with an appropriate choice of dc source magnitudes. It is possible to reduce inverter losses and boost efficiency by decreasing the number of switches used. The integration of an asymmetric 15-level inverter with a grid-connected solar photovoltaic system is discussed in this article. A grid-connected solar photovoltaic (GCSPV) system is modelled and simulated using an asymmetric 15-level inverter. The dc sources of the 15-level inverter are replaced with PV sources. The results were analyzed with different operating temperatures and solar irradiance conditions. The GCSPV system is controlled by a closed-loop control system using Particle Swarm Optimization (PSO), Harris Hawk Optimization (HHO), and Hybrid Particle Swarm Optimization-Genetic Algorithm (PSOGA) based Proportional plus Integral (PI) controllers. Grid voltage, grid current, grid power, and total harmonic distortion (THD) of grid currents were analyzed. The performance of the 15-level asymmetric inverter was evaluated by comparing the THD of the grid current and the efficiency of the grid-connected photovoltaic system.
AbstractList The purpose of this research is to develop an efficient single-phase grid-connected PV system using a better performing asymmetrical multilevel inverter (AMI). Circuit component reduction, harmonic reduction, and grid integration are critical criteria for better inverter efficiency. The proposed inverter’s optimized topology requires seven unidirectional switches, three symmetric dc sources, and three diodes to produce an asymmetric fifteen level output; whereas, the same configuration will generate 7, 11, and 15-level output with an appropriate choice of dc source magnitudes. It is possible to reduce inverter losses and boost efficiency by decreasing the number of switches used. The integration of an asymmetric 15-level inverter with a grid-connected solar photovoltaic system is discussed in this article. A grid-connected solar photovoltaic (GCSPV) system is modelled and simulated using an asymmetric 15-level inverter. The dc sources of the 15-level inverter are replaced with PV sources. The results were analyzed with different operating temperatures and solar irradiance conditions. The GCSPV system is controlled by a closed-loop control system using Particle Swarm Optimization (PSO), Harris Hawk Optimization (HHO), and Hybrid Particle Swarm Optimization-Genetic Algorithm (PSOGA) based Proportional plus Integral (PI) controllers. Grid voltage, grid current, grid power, and total harmonic distortion (THD) of grid currents were analyzed. The performance of the 15-level asymmetric inverter was evaluated by comparing the THD of the grid current and the efficiency of the grid-connected photovoltaic system.
Audience Academic
Author Kumar, Devineni Gireesh
Kotb, Hossam
Ganesh, Aman
Mishra, Sachin
Kshatri, Sainadh Singh
Azhari, Abdullah Ahmed
Milyani, Ahmad H.
Sireesha, Nagineni Venkata
Sharma, Naveen Kumar
Bajaj, Mohit
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Snippet The purpose of this research is to develop an efficient single-phase grid-connected PV system using a better performing asymmetrical multilevel inverter (AMI)....
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StartPage 7665
SubjectTerms 15-level inverter
Algorithms
Analysis
asymmetric multilevel inverter
Asymmetry
Circuits
Control systems
Diodes
Efficiency
Feedback control
Genetic algorithms
grid integration
grid-connected SPV system
Harmonic distortion
Harmonic reduction
Integration
Inverters
Irradiance
Mathematical optimization
Operating temperature
Optimization techniques
optimized inverter
Photovoltaic cells
Photovoltaics
solar photovoltaic system
Topology
Topology optimization
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Title Performance Analysis of an Optimized Asymmetric Multilevel Inverter on Grid Connected SPV System
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