An overview of the UNISAT-3 microsatellite power subsystem is given. This is an educational, low weight and low cost microsatellite designed, built, launched and operated in space by students and professors of Scuola di Ingegneria Aerospaziale, at University of Rome "La Sapienza". The satellite power system is based on terrestrial technology solar arrays and NiCd batteries. The microsatellite hosts other solar arrays, including multi-junction solar cells and mono-crystalline silicon high efficiency solar cells, in order to compare their behaviour in orbit. Moreover a MPPT (Maximum Power Point Tracking ) system has been designed and tested, and it is a technological payload of UNISAT-3. The MPPT design follows the studies performed in the field of solar powered racing cars, with modifications to make the system suitable for use in space. The system design, numerical simulation and hardware ground testing are described in the paper. The experiment and the performance evaluation criterion are described, together with the preliminary results of the first eight months of operation in orbit.

UNISAT-3 power system / Santoni, Fabio; Piergentili, Fabrizio; F., Bulgarelli; Graziani, Filippo. - STAMPA. - 589(2005), pp. 395-400. (Intervento presentato al convegno Seventh European Space Power Conference tenutosi a Stresa nel 9 May 2005 through 13 May 2005).

UNISAT-3 power system

SANTONI, Fabio;PIERGENTILI, FABRIZIO;GRAZIANI, Filippo
2005

Abstract

An overview of the UNISAT-3 microsatellite power subsystem is given. This is an educational, low weight and low cost microsatellite designed, built, launched and operated in space by students and professors of Scuola di Ingegneria Aerospaziale, at University of Rome "La Sapienza". The satellite power system is based on terrestrial technology solar arrays and NiCd batteries. The microsatellite hosts other solar arrays, including multi-junction solar cells and mono-crystalline silicon high efficiency solar cells, in order to compare their behaviour in orbit. Moreover a MPPT (Maximum Power Point Tracking ) system has been designed and tested, and it is a technological payload of UNISAT-3. The MPPT design follows the studies performed in the field of solar powered racing cars, with modifications to make the system suitable for use in space. The system design, numerical simulation and hardware ground testing are described in the paper. The experiment and the performance evaluation criterion are described, together with the preliminary results of the first eight months of operation in orbit.
2005
Seventh European Space Power Conference
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
UNISAT-3 power system / Santoni, Fabio; Piergentili, Fabrizio; F., Bulgarelli; Graziani, Filippo. - STAMPA. - 589(2005), pp. 395-400. (Intervento presentato al convegno Seventh European Space Power Conference tenutosi a Stresa nel 9 May 2005 through 13 May 2005).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/503746
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