SYSTEM FOR MANAGING AND CONTROLLING PHOTOVOLTAIC PANELS

The invention relates to a module for locally controlling a photovoltaic panel that includes: first and second terminals (B1, B2) for connecting in series by a single conductor (13) having homologous modules; a first terminal (A1) for connecting the photovoltaic panel, said first terminal being conn...

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description The invention relates to a module for locally controlling a photovoltaic panel that includes: first and second terminals (B1, B2) for connecting in series by a single conductor (13) having homologous modules; a first terminal (A1) for connecting the photovoltaic panel, said first terminal being connected to the first terminal (B1) for connecting in series; a switcher (S) that is connected between the second terminal (B2) for connecting in series and a second terminal (A2) connecting the panel; a diode (D0) that is connected between the first and second terminals (B1, B2) for connecting in series; a converter (70) that is provided so as to supply power to the module on the basis of the voltage that is developed by the panel between the first and second terminals (A1, A2) connecting the panel; a sensor (R3) for measuring the current flowing within the single conductor (13); and a means (60, 62) for closing the switcher when the current flowing within the single conductor exceeds a threshold. Un module de commande locale d'un panneau photovoltaïque comprend des première et seconde bornes (B1, B2) de mise en série par un conducteur unique (13) avec des modules homologues; une première borne (A1) de connexion du panneau photovoltaïque, reliée à la première borne (B1) de mise en série; un commutateur (S) relié entre la seconde borne (B2) de mise en série et une seconde borne (A2) de connexion du panneau; une diode (D0) reliée entre les première et seconde bornes (B1, B2) de mise en série; un convertisseur (70) prévu pour alimenter le module à partir de la tension développée par le panneau entre les première et seconde bornes (A1, A2) de connexion du panneau; un capteur (R3) pour mesurer le courant circulant dans le conducteur unique (13); et des moyens (60, 62) pour fermer le commutateur lorsque le courant circulant dans le conducteur unique dépasse un seuil.
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subjects BASIC ELECTRIC ELEMENTS
ELECTRIC SOLID STATE DEVICES NOT OTHERWISE PROVIDED FOR
ELECTRICITY
SEMICONDUCTOR DEVICES
title SYSTEM FOR MANAGING AND CONTROLLING PHOTOVOLTAIC PANELS
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