Tesis
Implementação por sistemas embarcados de protótipo parametrizável para coleta de dados microclimáticos georreferenciados
Fecha
2013-12-13Registro en:
PEREIRA, Roberto Benedito de Oliveira. Implementação por sistemas embarcados de protótipo parametrizável para coleta de dados microclimáticos georreferenciados. 2013. 137 f. Tese (Doutorado em Física Ambiental) - Universidade Federal de Mato Grosso, Instituto de Física, Cuiabá, 2013.
Autor
Musis, Carlo Ralph de
http://lattes.cnpq.br/2229878954372934
Musis, Carlo Ralph de
545.383.511-72
http://lattes.cnpq.br/2229878954372934
Gaio, Denilton Carlos
450.430.359-00
http://lattes.cnpq.br/8132654148436579
545.383.511-72
Figueiredo, Josiel Maimone de
568.019.391-49
http://lattes.cnpq.br/1242386923227672
Dalmagro, Higo José
089.683.367-41
http://lattes.cnpq.br/2968364807067338
Ueyama, Jó
295.216.702-82
http://lattes.cnpq.br/8098209307634371
Institución
Resumen
This research investigates the use of embedded systems for collecting and storing
data microclimate. The aim of this study was to develop a set of hardware and
software for the collection, storage and monitoring transects micrometorologics. The
locus of the research was the Federal University of Mato Grosso (UFMT). Regarding
the delimitation of space/time, this research took place in March 2013. In usability
testing of the data acquisition system performed a case study in the area of
environmental comfort on the trail walking UFMT for this, we performed a
calibration of the equipment through a paired analysis of variance and then we
collected the temperature and relative humidity in three heights, and the geographic
coordinates that route. After collecting and analyzing data , there were the necessary
corrections in the values obtained by each sensor and then generated a
semivariogram isotropic temperature and relative humidity , both resulted in an
exponential model with a coefficient of determination 76.6 % (Co = 0.2220 , C =
1.1360 + Co , Ao = 612.00 ; r2 = 0.766 ; RSS = 0.133 ) and 78.4 % (Co = 1.2900 , C
= 5.6180 + Co , Ao = 347.00 ; r2 = 0.784 ; RSS = 2.25 ), respectively. Generated was
also a contoured map by kriging data. During testing of autonomous power, the kit
assembled without the bluetooth module, we obtained an average consumption in the
standby mode is 57.45 mA and 74.87 mA for recording, with bluetooth module
values were respectively 81.27 mA and 106.98 mA. The use of the memory card to
set up the equipment and to retrieve stored data proved efficient. Based on the
results, we confirm the efficiency of the equipment, the methodology used and the
standard Arduino for prototyping.