Treffer: Bežični senzorski čvor za praćenje okolišnih uvjeta u zatvorenim prostorima ; Wireless sensor node for monitoring indoor environmental conditions

Title:
Bežični senzorski čvor za praćenje okolišnih uvjeta u zatvorenim prostorima ; Wireless sensor node for monitoring indoor environmental conditions
Authors:
Contributors:
Džapo, Hrvoje
Publisher Information:
Sveučilište u Zagrebu. Fakultet elektrotehnike i računarstva.
University of Zagreb. Faculty of Electrical Engineering and Computing.
Publication Year:
2025
Collection:
Croatian Digital Theses Repository (National and University Library in Zagreb)
Document Type:
Dissertation bachelor thesis
File Description:
application/pdf
Language:
Croatian
Rights:
http://rightsstatements.org/vocab/InC/1.0/ ; info:eu-repo/semantics/openAccess
Accession Number:
edsbas.C0542AEB
Database:
BASE

Weitere Informationen

U sklopu završnog rada modeliran je i implementiran bežični senzorski čvor za praćenje temperature i vlažnosti zraka. Osmišljena je i implementirana programska potpora za STM32 i ESP32 mikrokontrolere te za full-stack web aplikaciju koja je puštena u pogon na besplatnom javnom web poslužitelju. Web aplikacija korisnicima omogućuje registraciju senzora, praćenje okolišnih uvjeta u stvarnom vremenu te grafički pregled povijesti mjerenja koja se čuvaju u bazi podataka. Okolišne je uvjete dodatno moguće pratiti na LCD zaslonu koji je povezan s STM32 mikrokontrolerom. Za mjerenje okolišnih uvjeta korištena je SEN0414 pločica sa SHTC3 senzorom. Za implementaciju programske potpore korišteni su programski jezici C, Python, JavaScript i HTML. ; In this project a wireless sensor node for temperature and humidity monitoring has been designed and implemented. Software for STM32 and ESP32 microcontrollers, along with a full-stack web application which was deployed on a free public web server, was designed and implemented. The web application allows users to register sensors, monitor environmental conditions in real time and graphically view the measurement history stored in the database. Additionally, environmental conditions can be monitored on an LCD display connected to the STM32 microcontroller. The SEN0414 board with the SHTC3 sensor was used for measuring environmental conditions. The programming languages C, Python, JavaScript and HTML were used for overall software implementation.