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Maximum Power Point Tracking Scheme for PV Systems Operating Under Partially Shaded Conditions

IEEE Transactions on Industrial Electronics · 2008 · Vol. 55(4) · pp. 1689–1698
Himanshu PatelVivek Agarwal

Abstract

Current-voltage and power-voltage characteristics of large photovoltaic (PV) arrays under partially shaded conditions are characterized by multiple steps and peaks. This makes the tracking of the actual maximum power point (MPP) [global peak (GP)] a difficult task. In addition, most of the existing schemes are unable to extract maximum power from the PV array under these conditions. This paper proposes a novel algorithm to track the global power peak under partially shaded conditions. The formulation of the algorithm is based on several critical observations made out of an extensive study of the PV characteristics and the behavior of the global and local peaks under partially shaded conditions. The proposed algorithm works in conjunction with a DC-DC converter to track the GP. In order to accelerate the tracking speed, a feedforward control scheme for operating the DC-DC converter is also proposed, which uses the reference voltage information from the tracking algorithm to shift the operation toward the MPP. The tracking time with this controller is about one-tenth as compared to a conventional controller. All the observations and conclusions, including simulation and experimental results, are presented.

Photovoltaic System Optimization Techniquessolar cell performance optimizationSolar Thermal and Photovoltaic SystemsMaximum power point trackingPhotovoltaic systemControl theory (sociology)Controller (irrigation)Maximum power principleFeed forwardTracking (education)VoltageComputer sciencePower (physics)
Citations
1,035
FWCI
17.32
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References
Review of the maximum power point tracking algorithms for stand-alone photovoltaic systems
Solar Energy Materials and Solar Cells · 2006 · 1,167 citations
Optimization of Perturb and Observe Maximum Power Point Tracking Method
IEEE Transactions on Power Electronics · 2005 · 2,904 citations
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