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High-Performance Adaptive Perturb and Observe MPPT Technique for Photovoltaic-Based Microgrids

IEEE Transactions on Power Electronics · 2011 · Vol. 26(4) · pp. 1010–1021
Ahmed K. AbdelsalamAhmed MassoudSalman AhmedPrasad Enjeti

Abstract

Solar photovoltaic (PV) energy has witnessed double-digit growth in the past decade. The penetration of PV systems as distributed generators in low-voltage grids has also seen significant attention. In addition, the need for higher overall grid efficiency and reliability has boosted the interest in the microgrid concept. High-efficiency PV-based microgrids require maximum power point tracking (MPPT) controllers to maximize the harvested energy due to the nonlinearity in PV module characteristics. Perturb and observe (P&O) techniques, although thoroughly investigated in previous research, still suffer from several disadvantages, such as sustained oscillation around the MPP, fast tracking versus oscillation tradeoffs, and user predefined constants. In this paper, a modified P&O MPPT technique, applicable for PV systems, is presented. The proposed technique achieves: first, adaptive tracking; second, no steady-state oscillations around the MPP; and lastly, no need for predefined system-dependent constants, hence provides a generic design core. A design example is presented by experimental implementation of the proposed technique. Practical results for the implemented setup at different irradiance levels are illustrated to validate the proposed technique.

Photovoltaic System Optimization TechniquesMicrogrid Control and Optimizationsolar cell performance optimizationMaximum power point trackingPhotovoltaic systemMicrogridControl theory (sociology)Computer scienceElectronic engineeringNonlinear systemControl engineeringEngineeringVoltage
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References
Optimization of Perturb and Observe Maximum Power Point Tracking Method
IEEE Transactions on Power Electronics · 2005 · 2,904 citations
Comprehensive Approach to Modeling and Simulation of Photovoltaic Arrays
IEEE Transactions on Power Electronics · 2009 · 4,236 citations
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IEEE Transactions on Power Electronics · 2001 · 1,293 citations
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