Publication | Closed Access
Parameter estimation of photovoltaic model via parallel particle swarm optimization algorithm
52
Citations
24
References
2015
Year
Parameter EstimationEngineeringPhotovoltaic SystemPhotovoltaic Power StationParallel MetaheuristicsPhotovoltaicsEnergy OptimizationParallel Processing FrameworkSystems EngineeringHybrid Optimization TechniqueParallel ComputingRenewable Energy SystemsBio-inspired Metaheuristic AlgorithmsElectrical EngineeringPhotovoltaic ModelSolar PowerComputer EngineeringPpso AlgorithmEnergy ManagementParallel ProgrammingRooftop PhotovoltaicsGrid Optimization
Recently, bio-inspired metaheuristic algorithms have been widely used as powerful optimization tools to estimate crucial parameters of photovoltaic (PV) models. However, the computational cost involved in terms of the time increases as data size or the complexity of the applied PV electrical model increases. Hence, to overcome these limitations, this paper presents the parallel particle swarm optimization (PPSO) algorithm implemented in Open Computing Language (OpenCL) to solve the parameter estimation problem for a wide range of PV models. Experimental and simulation results demonstrate that the PPSO algorithm not only has the capability of obtaining all the parameters with extremely high accuracy but also dramatically improves the computational speed. This is possible and is shown in this work via the inherent capabilities of the parallel processing framework. Copyright © 2015 John Wiley & Sons, Ltd.
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