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@InProceedings{OrtizEspiDucaWest:2017:UtSeRa,
               author = "Ortiz, Mauricio Soares and Espinoza, Jean Marcel de Almeida and 
                         Ducati, Jorge Ricardo and Westphalen, Andr{\'e} Bilibio",
                title = "Utiliza{\c{c}}{\~a}o de sensores de radia{\c{c}}{\~a}o solar 
                         para a an{\'a}lise da distribui{\c{c}}{\~a}o espacial de 
                         insola{\c{c}}{\~a}o",
            booktitle = "Anais...",
                 year = "2017",
               editor = "Gherardi, Douglas Francisco Marcolino and Arag{\~a}o, Luiz 
                         Eduardo Oliveira e Cruz de",
                pages = "7368--7375",
         organization = "Simp{\'o}sio Brasileiro de Sensoriamento Remoto, 18. (SBSR)",
            publisher = "Instituto Nacional de Pesquisas Espaciais (INPE)",
              address = "S{\~a}o Jos{\'e} dos Campos",
             abstract = "The objective of this work was the need to acquire and store data 
                         on solar radiation, thinking about an analysis of the spatial 
                         distribution of insolation using Arduino prototyping platform. 
                         This work was carried out at the Federal Institute of Education, 
                         Science and Technology of Rio Grande do Sul - Campus Rio Grande / 
                         RS, located at latitude 32 ° 02 of longitude 06 and -52 ° 05 55 
                         with average altitude Of 5 meters. The data discussed in this 
                         document relate to one of the development stages of a sensor 
                         system, which aims to monitor evapotranspiration data for 
                         viticulture along with other climatic quantities such as: air 
                         temperature, relative humidity, wind speed and rainfall . To 
                         validate the data obtained, information from automatic 
                         meteorological stations of the National Institute of Meteorology 
                         (INMET) were used for comparison. For radiation data two 
                         photovoltaic solar panels are used with dimensions of 6 cm x 6 cm, 
                         voltage generator for power values 5W and voltage of 0.4V. For the 
                         acquisition of information regarding solar radiation, photovoltaic 
                         panels were connected to the Arduino platform, and this was used 
                         as a voltage generator, correlated linearly with the voltage 
                         generated with the photovoltaic radiation. With this system it was 
                         possible to obtain information of correspondence between 
                         millivolts and solar radiation, efficiently.",
  conference-location = "Santos",
      conference-year = "28-31 maio 2017",
                 isbn = "978-85-17-00088-1",
                label = "59629",
             language = "pt",
         organisation = "Instituto Nacional de Pesquisas Espaciais (INPE)",
                  ibi = "8JMKD3MGP6W34M/3PSMFJL",
                  url = "http://urlib.net/ibi/8JMKD3MGP6W34M/3PSMFJL",
           targetfile = "59629.pdf",
                 type = "Radiometria e sensores",
        urlaccessdate = "27 abr. 2024"
}


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