This paper deals with a data-acquisition system that has been specifically developed for a long-term monitoring of ten different photovoltaic plants. The main goals of the system consist in estimating the drift of the plant components, mainly photovoltaic modules and power inverters, and comparing the performance of the ten plants, which are based on different technologies and architectures. Owing to these goals, the traceabilityassurance of the obtained measurements is mandatory, hence the data-acquisition system has been designed to be easily calibrated and, if necessary, adjusted to compensate for measuring-chain drifts. In addition, the measurement uncertainty, which has to be suitable to distinguish the behaviour of the different PV plants, has to be stated for each of the estimated parameters. A brief description of the data-acquisition system is provided and its measurement capabilities are highlighted in terms of measured quantities and expected uncertainty. Results that refer to a period of thirty months are also reported.
Long-Term Monitoring of Photovoltaic Plants / Carullo, Alessio; Ferraris, Franco; Vallan, Alberto; Spertino, Filippo; F., Attivissimo. - STAMPA. - 1:(2013), pp. 295-300. (Intervento presentato al convegno 19th Symposium IMEKO TC 4 Symposium tenutosi a Barcellona - Spagna nel July 18-19, 2013).
Long-Term Monitoring of Photovoltaic Plants
CARULLO, Alessio;FERRARIS, Franco;VALLAN, Alberto;SPERTINO, Filippo;
2013
Abstract
This paper deals with a data-acquisition system that has been specifically developed for a long-term monitoring of ten different photovoltaic plants. The main goals of the system consist in estimating the drift of the plant components, mainly photovoltaic modules and power inverters, and comparing the performance of the ten plants, which are based on different technologies and architectures. Owing to these goals, the traceabilityassurance of the obtained measurements is mandatory, hence the data-acquisition system has been designed to be easily calibrated and, if necessary, adjusted to compensate for measuring-chain drifts. In addition, the measurement uncertainty, which has to be suitable to distinguish the behaviour of the different PV plants, has to be stated for each of the estimated parameters. A brief description of the data-acquisition system is provided and its measurement capabilities are highlighted in terms of measured quantities and expected uncertainty. Results that refer to a period of thirty months are also reported.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2525308
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