This paper describes an intelligent electronic system designed to monitor, both locally or remotely, a PV system in order to detect any theft or malfunction and to optimize energy production by efficient algorithm for driving the plant’s solar trackers. The system consists of several electronic boards; the CS097 sensing/processing board detects environmental parameters, temperature and solar radiation, calculates produced power and energy for monitoring efficiency and electricity production. The CS083/CS088 electrical boards work as alarm anti-theft system which detects a critical condition in case of electrical continuity loss or not-justified rapid variation of PV string voltage; the intelligent unit has dual operation mode that makes it capable of auto-adapting itself distinguishing between day and night. The designed CS012 board controls a biaxial solar tracker and instantly calculates the sun position at latitude and longitude of the installation site so following solar orbit.

Intelligent System for Monitoring and Control of Photovoltaic Plants and for Optimization of Solar Energy Production

VISCONTI, Paolo;
2015-01-01

Abstract

This paper describes an intelligent electronic system designed to monitor, both locally or remotely, a PV system in order to detect any theft or malfunction and to optimize energy production by efficient algorithm for driving the plant’s solar trackers. The system consists of several electronic boards; the CS097 sensing/processing board detects environmental parameters, temperature and solar radiation, calculates produced power and energy for monitoring efficiency and electricity production. The CS083/CS088 electrical boards work as alarm anti-theft system which detects a critical condition in case of electrical continuity loss or not-justified rapid variation of PV string voltage; the intelligent unit has dual operation mode that makes it capable of auto-adapting itself distinguishing between day and night. The designed CS012 board controls a biaxial solar tracker and instantly calculates the sun position at latitude and longitude of the installation site so following solar orbit.
2015
978-1-4799-7992-9
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11587/414370
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