In this paper, the theoretical analysis and the experimental validation of a modified version of the Maximum Power Point Tracking Technique, that is known with the acronym TEODI are presented and discussed. The Modified version of TEODI (MTEODI) outperforms TEODI in PV applications operating under mismatching conditions. The working principle of MTEODI is based on the periodic measurement of the short circuit currents of the PV Units. The knowledge of such currents, allows not only to determine if mismatching conditions occur, but also to identify the values of the suitable correction factors on which the working of MTEODI is based.

Modified TEODI MPPT Technique: Theoretical Analysis and Experimental Validation in Uniform and Mismatching Conditions / Balato, M; Costanzo, L; Marino, P; Rubino, G; Rubino, L; Vitelli, M. - In: IEEE JOURNAL OF PHOTOVOLTAICS. - ISSN 2156-3381. - 7:2(2017), pp. 604-613. [10.1109/JPHOTOV.2016.2634327]

Modified TEODI MPPT Technique: Theoretical Analysis and Experimental Validation in Uniform and Mismatching Conditions

Rubino G;
2017

Abstract

In this paper, the theoretical analysis and the experimental validation of a modified version of the Maximum Power Point Tracking Technique, that is known with the acronym TEODI are presented and discussed. The Modified version of TEODI (MTEODI) outperforms TEODI in PV applications operating under mismatching conditions. The working principle of MTEODI is based on the periodic measurement of the short circuit currents of the PV Units. The knowledge of such currents, allows not only to determine if mismatching conditions occur, but also to identify the values of the suitable correction factors on which the working of MTEODI is based.
2017
photovoltaic; mismatching; distributed maximum power point tracking; performance optimization
01 Pubblicazione su rivista::01a Articolo in rivista
Modified TEODI MPPT Technique: Theoretical Analysis and Experimental Validation in Uniform and Mismatching Conditions / Balato, M; Costanzo, L; Marino, P; Rubino, G; Rubino, L; Vitelli, M. - In: IEEE JOURNAL OF PHOTOVOLTAICS. - ISSN 2156-3381. - 7:2(2017), pp. 604-613. [10.1109/JPHOTOV.2016.2634327]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1678395
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