TY - JOUR
T1 - Intelligent and Optimal System for Monitoring Environmental Variables and Solar Luminosity, with solar path tracker and telemetry
AU - Alan Calderón Ch, J.
AU - Gamarra, Benjamín Barriga
AU - Tafur Sotelo, Julio C.
AU - Ugarte, Fernando Jiménez
N1 - Publisher Copyright:
© 2024, European Association for the Development of Renewable Energy, Environment and Power Quality (EA4EPQ). All rights reserved.
PY - 2024/8/29
Y1 - 2024/8/29
N2 - In this proposed research are analyzed general solutions and techniques to optimize the solar luminosity measurement by a designed smart system, as well as its usability by the solar energy conversion and its storing. However, many times, this kind of systems have not an optimal solar path tracker and as a consequence it can not be measured the full solar luminosity during all the day, therefore, in this work are designed optimal mathematical models and algorithms to enhance the solar path tracker according to measure solar luminosity and getting optimal solar energy conversion/storing, which is useful to study geographical conditions before to build solar energy conversion centers. As well as, in this research also is studied and suggested some techniques to get wireless data communication regarding the measured environmental variables, measured solar luminosity and stored electrical energy as a consequence of the solar energy conversion, which can be transmitted, so far away, to a central monitoring center by Radio Frequency (RF) waves.
AB - In this proposed research are analyzed general solutions and techniques to optimize the solar luminosity measurement by a designed smart system, as well as its usability by the solar energy conversion and its storing. However, many times, this kind of systems have not an optimal solar path tracker and as a consequence it can not be measured the full solar luminosity during all the day, therefore, in this work are designed optimal mathematical models and algorithms to enhance the solar path tracker according to measure solar luminosity and getting optimal solar energy conversion/storing, which is useful to study geographical conditions before to build solar energy conversion centers. As well as, in this research also is studied and suggested some techniques to get wireless data communication regarding the measured environmental variables, measured solar luminosity and stored electrical energy as a consequence of the solar energy conversion, which can be transmitted, so far away, to a central monitoring center by Radio Frequency (RF) waves.
KW - energy-saving
KW - Modulating Function (MF)
KW - nanostructures
KW - smart sensors
KW - Solar path tracker
KW - transducers
KW - wireless data transmission
UR - http://www.scopus.com/inward/record.url?scp=85204357133&partnerID=8YFLogxK
M3 - Article
AN - SCOPUS:85204357133
SN - 2172-038X
VL - 22
SP - 43
EP - 48
JO - Renewable Energy and Power Quality Journal
JF - Renewable Energy and Power Quality Journal
IS - 5
ER -