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Razvoj krmilnega sistema prototipa sušilno dezinfekcijske omare
ID Demšar, Janez (Author), ID Bračun, Drago (Mentor) More about this mentor... This link opens in a new window

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Abstract
Razvito je krmilje za prototip sušilno dezinfekcijske omare, ki služi osvežitvi že nošene obleke ter omogoča njeno ponovno uporabo in s tem zmanjša potrebo po pranju. Najprej je izvedena zasnova zaprto zančnega krmiljenja temperature in koncentracije ozona v napravi. Nato so izbrani ustrezni senzorji, aktuatorji in krmilniki. Razvita je programska oprema in grafični uporabniški vmesnik, ki omogoča enostavno upravljanje z napravo prek zaslona na dotik. Krmilje omogoča dva načina delovanja. V prvem je zgolj nadzor sistema na osnovi merjenja fizikalnih veličin v sistemu, v drugem pa se izvaja krmiljenje in upravljanje naprave. Rezultati testiranj kažejo, da razvit način krmiljenja temperature in koncentracije ozona izpolnjuje zahteve krmilnih specifikacij in dosega postavljene cilje z vidika prilagodljivosti in enostavnosti uporabe.

Language:Slovenian
Keywords:krmilni sistem, sušilno dezinfekcijska omara, prototip, senzorji in aktuatorji, krmilnik, grafični uporabniški vmesnik
Work type:Master's thesis/paper
Organization:FS - Faculty of Mechanical Engineering
Year:2024
PID:20.500.12556/RUL-158916 This link opens in a new window
Publication date in RUL:22.06.2024
Views:60
Downloads:4
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Secondary language

Language:English
Title:Control system development for drying and disinfection cabinet prototype
Abstract:
A control system has been developed for a prototype drying and disinfection cabinet, which serves to refresh already worn clothes, enabling their reuse and thus reducing the need for washing. Initially, a closed loop control design for temperature and ozone concentration within the device is designed. Appropriate sensors, actuators, and controllers are selected. Software and a graphical user interface are developed, enabling easy operation of the device via a touchscreen. The control system supports two modes of operation. The first mode allows only system monitoring based on the measurement of physical quantities in the system, while the second also enables control and management of the device. Testing results show that the developed method of controlling temperature and ozone concentration meets the requirements of the control specifications and achieves the set goals in terms of flexibility and ease of use.

Keywords:control system, drying and disinfection cabinet, prototype, sensors and actuators, controller, graphical user interface

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