IoT-based aeroponic indoor herb growing system / Marc B. Abella, Angelie E. Duhaylungsod, Cyril Jay R. Pia.

By: Abella, Marc B [author.]Contributor(s): Duhaylungsod, Angelie E [author.] | Pia, Cyril Jay R [author.]Material type: TextTextPublisher: Cebu City, Philippines : University of Cebu-Banilad, c2023Description: 335 pages : color illustrationsContent type: text Media type: unmediated Carrier type: volumeSubject(s): Aeroponics | Internet of things | HydroponicsSummary: Herb cultivation can be challenging in the face of unpredictable weather conditions. This study presents an IoT-based Aeroponic Indoor Herb Growing System designed to assist those facing such challenges, promote sustainable gardening, and address food security. The system's vertical tower design features 12 holes for planting herbs in 2" net pots. A mobile application lets Users manage the water pump timer, light intensity, and sensor levels. Furthermore, the system wirelessly sends data to Firebase to ensure sensor data storage for a specific time. Energy efficiency and reduced electrical costs are achieved through the system's backup solar power source and SMS notification feature.
Tags from this library: No tags from this library for this title. Log in to add tags.
    Average rating: 0.0 (0 votes)
Item type Current location Call number Status Date due Barcode
Thesis Thesis College Annex Library
Periodicals
T Ab35io 2023 (Browse shelf) Not for loan 3UCBL000028796

Includes bibliographical references.

Herb cultivation can be challenging in the face of unpredictable weather conditions. This study presents an IoT-based Aeroponic Indoor Herb Growing System designed to assist those facing such challenges, promote sustainable gardening, and address food security. The system's vertical tower design features 12 holes for planting herbs in 2" net pots. A mobile application lets Users manage the water pump timer, light intensity, and sensor levels. Furthermore, the system wirelessly sends data to Firebase to ensure sensor data storage for a specific time. Energy efficiency and reduced electrical costs are achieved through the system's backup solar power source and SMS notification feature.

Adult

College of Computer Engineering Computer Engineering Brigoli, Darlyne

English

There are no comments on this title.

to post a comment.

University of Cebu - Banilad | 6000, Gov. M. Cuenco Ave, Cebu City, 6000 Cebu, Philippines
Tel. 410 8822 local 7123| e-mail ucbaniladcampus.library@gmail.com

Powered by Koha