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Merilnik kakovosti zraka v domačem okolju z oddaljenim dostopom na osnovi Raspberry Pi
ID LEGAT, MATEJ (Author), ID Pirc, Matija (Mentor) More about this mentor... This link opens in a new window

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Abstract
Kakovost zraka v notranjih prostorih pomembno vpliva na zdravje in počutje vendar človek s svojimi čutili ne more zanesljivo oceniti vseh parametrov, ki jo določajo. V okviru diplomskega dela je bil zato razvit merilni sistem za spremljanje kakovosti zraka v domačem okolju. Sistem temelji na enoploščnem računalniku Raspberry Pi Zero 2 W in meri koncentracijo ogljikovega dioksida, temperaturo, relativno vlažnost, zračni tlak, osvetljenost ter koncentracijo delcev PM₂.₅ in PM₁₀. Meritve zajema v desetminutnih intervalih in jih shranjuje v lokalno podatkovno bazo SQLite. Trenutne vrednosti prikazuje na OLED prikazovalniku, pregled zgodovine in grafični prikaz meritev pa omogoča spletni uporabniški vmesnik. Delovanje izdelanega sistema je bilo ovrednoteno s primerjavo izmerjenih vrednosti z vrednostmi komercialnih merilnikov in z analizo odziva sistema na spremembe razmer v prostoru.

Language:Slovenian
Keywords:kakovost zraka v notranjih prostorih, Raspberry Pi, ogljikov dioksid, prašni delci, spletni uporabniški vmesnik
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FE - Faculty of Electrical Engineering
Year:2026
PID:20.500.12556/RUL-186734 This link opens in a new window
COBISS.SI-ID:291020035 This link opens in a new window
Publication date in RUL:04.09.2026
Views:154
Downloads:23
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Secondary language

Language:English
Title:Raspberry Pi-based home air quality monitor with remote access
Abstract:
Indoor air quality significantly affects human health and well-being. However, human senses cannot reliably assess all the parameters that determine it. Therefore, a measurement system for monitoring air quality in a residential environment was developed as part of this thesis. The system is based on a Raspberry Pi Zero 2 W single-board computer and measures carbon dioxide concentration, temperature, relative humidity, atmospheric pressure, illuminance, PM₂.₅ and PM₁₀ concentrations. Measurements are recorded at ten-minute intervals and stored in a local SQLite database. Current values are displayed on an OLED screen, while measurement history can be reviewed through a web-based user interface. The performance of the developed system was evaluated by comparing its readings with those obtained from commercial monitoring devices and by analysing its response to changes in indoor conditions.

Keywords:indoor air quality, Raspberry Pi, carbon dioxide, particulate matter, web user interface

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